In December 2012, the three CCiCap winners were each given an additional USD$10 million in funding as the first of two series of "certification products contracts" (CPC) to allow for further testing, engineering standards, and design analysis to meet NASA's safety requirements for crewed spaceflight. The second CPC series manifested as Commercial Crew Transportation Capability (CCtCap), the final phase of the CCDev program, where NASA would certify an operator to run crewed flights to the ISS through an open competition. The window for proposal submissions was closed on 22 January 2014. Sierra Nevada announced a week later that a privately funded orbital test flight of a Dream Chaser spacecraft, using an Atlas V launch vehicle intended to be purchased by Sierra Nevada, was planned to occur on 1 November 2016. On 16 September 2014, CCtCap concluded with SpaceX's Crew Dragon and Boeing's Starliner being the sole winners, with SpaceX receiving US$2.6 billion contract and Boeing a US$4.2 billion contract. Sierra Nevada filed a protest with the Government Accountability Office (GAO) in response, citing "serious questions and inconsistencies in the source selection process." The United States Court of Federal Claims upheld a decision to allow development of the Crew Dragon and Starliner to proceed during the protest, citing concerns for crewed operations of the ISS in the event of a delay to the Commercial Crew Program. The GAO declined Sierra Nevada's protest in January 2015, stating that evidence gathered by the GAO discredited Sierra Nevada's claims against NASA; Sierra Nevada accepted the decision. The company laid off 90 staff members working on the Dream Chaser following the CCtCap result, and repurposed the spacecraft as a for-hire vehicle for commercial spaceflight. A cargo variant of the Dream Chaser would later be developed and selected by NASA to fly uncrewed resupply missions to the ISS under a Commercial Resupply Services 2 contract.
While the first flights of Commercial Crew Program were originally intended to be launched by the end of 2017, Boeing announced in May 2016 that their first crewed flight would be delayed to 2018 due to problems integrating with Starliner's Atlas V N22 launch vehicle. In December 2016, SpaceX announced their first crewed flights would also be delayed to 2018, following the loss of AMOS-6 in an accidental launch pad explosion of a Falcon 9, the Crew Dragon's launch vehicle. With no further flights in the Soyuz program for American astronauts past 2018, the GAO expressed concerns and recommended in February 2017 that NASA develop a plan for crew rotation in the event of further delays. Following the settlement of a lawsuit against Russian space manufacturer Energia over Sea Launch, Boeing received options for up to five seats on Soyuz flights, which NASA purchased from Boeing. NASA announced the astronauts chosen to pilot the Crew Dragon and Starliner vehicles in August 2018, and two months later penned the launch of demonstration missions for the Crew Dragon and Starliner for dates in 2019. The uncrewed SpaceX Demo-1 mission was launched on 2 March 2019, in which a Crew Dragon successfully docked with the ISS and returned to Earth six days after launch. The capsule used in the mission, however, was accidentally destroyed in a static fire test of its SuperDraco engines in April 2019, causing further delays to launch of future Crew Dragon flights. The Boeing Orbital Flight Test and Boeing Crew Flight Test, which had both been delayed due to a failed test of Starliner's abort system, were further pushed without explanation from dates in early-to-mid 2019 to late 2019.
On February 28, 2022, NASA announced that it had awarded three additional crew missions to SpaceX bringing the total crew missions for SpaceX to nine and the total contract value to $3,490,872,904. In September 2022, NASA announced yet another addition, this time of five missions, bringing the total to fourteen and the total contract value to $4.93 billion.
Boeing's CST-100 Starliner – "CST" an acronym for "Crew Space Transportation" – measures 4.6 meters (15 feet) in diameter and 5.1 meters (17 feet) in height. The crew module of Starliner can be reused for up to ten flights, while the service module is expended during each flight. Various engines manufactured by Aerojet Rocketdyne for orbital maneuvering, attitude control, reaction control, and launch escape, are utilized by Starliner. Eight reaction control engines on the spacecraft's crew module and 28 reaction control engines on the spacecraft's service module provide 380 newtons (85 pounds-force) and 445 newtons (100 pounds-force) each, respectively. Also located on the service module, 20 custom-made Orbital Maneuvering and Attitude Control (OMAC) engines provide 6,700 newtons (1,500 pounds-force) of thrust each, while four RS-88 engines provide 178,000 newtons (40,000 pounds-force) of thrust each in a launch abort scenario. During a nominal flight without a launch abort, Starliner can use unspent fuel reserved for its RS-88 engines to help its OMAC engines perform the orbital insertion burn, following separation from the Centaur upper stage during launch. Once in space, Starliner spacecraft can survive up to 60 hours in free flight. Unlike Crew Dragon, Starliner is designed to return to Earth on land instead of ocean, using airbags to cushion the vehicle's impact with the ground. Four sites in the western contiguous United States – the Dugway Proving Ground in Utah, Edwards Air Force Base in California, White Sands Missile Range in New Mexico, and Willcox Playa in Arizona – will serve as landing ranges for returning Starliner spacecraft, though in an emergency scenario, it is also equipped to perform a splashdown return. Boeing's CCtCap contract values each seat on a CST-100 flight to be between US$91–99 million, while the face value of each seat has been estimated by NASA's OIG to be around US$90 million.
NASA missions to the ISS launch on an average every six months. As part of the original contracts Boeing and SpaceX each were initially contracted for up to six operational flights. NASA later contracted with SpaceX for up to an additional eight flights as a contingency if Starliner is further delayed and to ensure service to the ISS until 2030.
On 3 December 2021, NASA made clear it would secure up to an additional three flights from SpaceX to maintain an uninterrupted U.S. capability for human access to the space station. The background to this was that SpaceX was likely to launch its sixth flight in early 2023 potentially before Boeing's first operational flight, and NASA concluded that only SpaceX had the capability needed.
On 31 August 2022, NASA awarded SpaceX with an additional 5 flights bringing the total number of contracted Crew Dragon flights to 14. The additional flights will run through 2030.
NASA hopes to extend the seat-swapping arrangement with Roscosmos to include Starliner flights after Starliner has enough flights, which will be no earlier than the Starliner-2 flight.
The CCP spacecraft missions usually overlap with brief intervals during which two are docked at the same time. Crew-2 did not overlap with Crew-3 because of an unexpected delay of the Crew-3 launch.
Niles-Carnes, Elyna (15 October 2024). "NASA Updates 2025 Commercial Crew Plan". NASA.gov. NASA. Retrieved 15 October 2024. https://blogs.nasa.gov/commercialcrew/2024/10/15/nasa-updates-2025-commercial-crew-plan
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Dinkin, Sam (25 October 2004). "Implementing the vision". The Space Review. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Eleven companies have been selected "to conduct preliminary concept studies for human lunar exploration and the development of the crew exploration vehicle." http://www.thespacereview.com/article/254/1
Neubek, Deborah J.; Rattigan, Jennifer L.; Stegemoeller, Charles; Thomas, L. Dale (20 May 2011). "Constellation program Lessons Learned; Volume I: Executive Summary" (PDF). NASA History Office. pp. 2–3. Archived (PDF) from the original on 8 March 2019. Retrieved 8 March 2019. NASA formed the Constellation Program in 2005 [...] The Initial Capability (IC) comprised elements necessary to service the ISS by 2015 with crew rotations: including the Orion Crew Exploration Vehicle, the Ares I Crew Launch Vehicle, and the supporting ground and mission infrastructure to enable these missions. https://history.nasa.gov/SP-6127.pdf
Neubek, Deborah J.; Rattigan, Jennifer L.; Stegemoeller, Charles; Thomas, L. Dale (20 May 2011). "Constellation program Lessons Learned; Volume I: Executive Summary" (PDF). NASA History Office. pp. 2–3. Archived (PDF) from the original on 8 March 2019. Retrieved 8 March 2019. NASA formed the Constellation Program in 2005 [...] The Initial Capability (IC) comprised elements necessary to service the ISS by 2015 with crew rotations: including the Orion Crew Exploration Vehicle, the Ares I Crew Launch Vehicle, and the supporting ground and mission infrastructure to enable these missions. https://history.nasa.gov/SP-6127.pdf
BBC News staff (23 August 2006). "Nasa names new spacecraft 'Orion'". BBC News. Archived from the original on 8 March 2019. Retrieved 8 March 2019. The vehicle will be capable of transporting cargo and up to six crew members to and from the International Space Station. It can carry four astronauts for lunar missions. http://news.bbc.co.uk/2/hi/science/nature/5277736.stm
Malik, Tariq (19 September 2005). "NASA's New Moon Plans: 'Apollo on Steroids'". Space.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. The spacecraft, NASA's Crew Exploration Vehicle (CEV), could even carry six-astronaut crews to the International Space Station (ISS) or fly automated resupply shipments as needed, NASA chief Michael Griffin said. https://www.space.com/1567-nasa-moon-plans-apollo-steroids.html
Cowing, Keith L.; Sietzen, Frank Jr. (7 August 2005). "NASA's New Launch Systems May Include the Return of the Space Tug". SpaceRef. Archived from the original on 2 February 2013. Following the Columbia accident in February 2003, planning for the OSP was placed on hold. Eventually, the OSP would be superseded-or morphed into-the requirements for what eventually became the CEV. https://archive.today/20130202223346/http://www.spaceref.com/news/viewnews.html?id=1057
Dinerman, Taylor (31 January 2005). "What do we do with the ISS?". The Space Review. Archived from the original on 8 March 2019. Retrieved 8 March 2019. The big question for the next NASA administrator will be whether he going to reverse the decision to delete the ISS service role from the Crew Exploration Vehicle's mission. [...] The CEV was sold at least partly on the basis that it would replace the planned Orbital Space Plane (OSP), which was supposed to be a true multipurpose manned spacecraft. http://www.thespacereview.com/article/313/1
Marshall Space Flight Center (1 May 2003). "Fact sheet number: FS-2003-05-64-MSFC". National Aeronautics and Space Administration. Archived from the original on 4 August 2012. Retrieved 8 March 2019. Based largely on existing technologies, the Orbital Space Plane would provide safe, affordable access to the International Space Station. The Orbital Space Plane will be able to support a Space Station crew rotation of four to six months. /wiki/Marshall_Space_Flight_Center
Sunseri, Gina (22 October 2009). "Augustine Commission: NASA's Plans 'Unsustainable'". ABC News. Archived from the original on 26 October 2009. Retrieved 8 March 2019. To get to the moon and then eventually go on to Mars will take much more money and technology than the U.S. space program has now, according to a report released today by an independent panel convened, at White House request [...] Keep Ares and Orion going -- but recognize they probably won't be ready for regular use until 2017. [...] To do all this, the panel said NASA would need substantially more funding -- an additional $3 billion annually starting next year. https://abcnews.go.com/WN/AheadoftheCurve/space-program-major-revision-augustine-commission/story?id=8892321
Atkinson, Nancy (21 October 2009). "NASA Administrator Orders Study of Heavy Lift Alternatives". Universe Today. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Looking at alternatives to the Constellation program is an apparent reaction to the final Augustine Commission report, which will be made public on Thursday. https://www.universetoday.com/43125/nasa-administrator-orders-study-of-heavy-lift-alternatives/
Amos, Jonathan (30 September 2010). "US politicians cement a new philosophy for Nasa". BBC News. Archived from the original on 8 March 2019. Retrieved 8 March 2019. It authorises $1.3bn over the next three years for commercial companies to begin taxiing crew to the International Space Station (ISS). [...] It brings to an end the Bush-era Constellation programme which had set the agency the task of going back to the Moon. https://www.bbc.co.uk/blogs/thereporters/jonathanamos/2010/09/us-politicians-cement-a-new-ph.shtml
Malik, Tariq (6 April 2010). "NASA's New Asteroid Mission Could Save the Planet". Space.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. He pledged to revive the Orion spacecraft, initially cancelled along the rest of NASA's Constellation program building new rockets and spacecraft. Now [it will play a role] in deep space missions, Obama said. https://www.space.com/8240-nasa-asteroid-mission-save-planet.html
Amos, Jonathan (30 September 2010). "US politicians cement a new philosophy for Nasa". BBC News. Archived from the original on 8 March 2019. Retrieved 8 March 2019. It authorises $1.3bn over the next three years for commercial companies to begin taxiing crew to the International Space Station (ISS). [...] It brings to an end the Bush-era Constellation programme which had set the agency the task of going back to the Moon. https://www.bbc.co.uk/blogs/thereporters/jonathanamos/2010/09/us-politicians-cement-a-new-ph.shtml
Matson, John (1 February 2010). "Phased Out: Obama's NASA Budget Would Cancel Constellation Moon Program, Privatize Manned Launches". Scientific American. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Obama's blueprint for NASA would cancel the Constellation program, the family of rockets and hardware now in development to replace the aging space shuttle, and would call instead on commercial vendors to fly astronauts to orbit. https://www.scientificamerican.com/article/nasa-budget-constellation-cancel/
Malik, Tariq (1 February 2010). "Obama Budget Scraps NASA Moon Plan for '21st Century Space Program'". Space.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. ...and offers $6 billion over five years to support commercially built spaceships to launch NASA astronauts into space. https://www.space.com/7849-obama-budget-scraps-nasa-moon-plan-21st-century-space-program.html
Perrotto, Trent; Thomas, Candrea (10 December 2012). "NASA Awards Contracts In Next Step Toward Safely Launching American Astronauts From U.S. Soil". National Aeronautics and Space Administration. Archived from the original on 8 March 2019. Retrieved 8 March 2019. ...the certification products contracts (CPC) [will ensure] crew transportation systems will meet agency safety requirements and standards to launch American astronauts to the International Space Station from the United States, ending the agency's reliance on Russia for these transportation services. [...] This includes data that will result in developing engineering standards, tests and analyses of the crew transportation systems design. https://www.nasa.gov/centers/kennedy/news/releases/2012/release-20121210.html
Reichhardt 2018, "A pair of privately owned spaceships, Boeing's Starliner and SpaceX's Crew Dragon, are set to make their debut within the next few months [...] ending NASA's post-space-shuttle reliance on the Soyuz to ferry astronauts to and from the International Space Station." - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
Amos, Jonathan (30 September 2010). "US politicians cement a new philosophy for Nasa". BBC News. Archived from the original on 8 March 2019. Retrieved 8 March 2019. It authorises $1.3bn over the next three years for commercial companies to begin taxiing crew to the International Space Station (ISS). [...] It brings to an end the Bush-era Constellation programme which had set the agency the task of going back to the Moon. https://www.bbc.co.uk/blogs/thereporters/jonathanamos/2010/09/us-politicians-cement-a-new-ph.shtml
Byerly, Josh; Edwards, Ashley; Hautaluoma, Grey (1 February 2010). "NASA Selects Commercial Firms to Begin Development of Crew Transportation Concepts and Technology Demonstrations for Human Spaceflight Using Recovery Act Funds". National Aeronautics and Space Administration. Archived from the original on 12 May 2013. Retrieved 8 March 2019. Through an open competition for funds from the American Recovery and Reinvestment Act of 2009, NASA has awarded Space Act Agreements... https://www.nasa.gov/home/hqnews/2010/feb/HQ_C10-004_Commercia_Crew_Dev.html
Foust, Jeff (4 February 2011). "CCDev awardees one year later: where are they now?". NewSpace Journal. Archived from the original on 5 June 2013. Retrieved 8 March 2019. NASA announced a set of Commercial Crew Development (CCDev) awards, using $50 million they agency got as part of a larger grant of stimulus funding. /wiki/Jeff_Foust
Rhian, Jason (20 December 2010). "Numerous Companies Propose Possible 'Space Taxis'". Universe Today. Archived from the original on 8 March 2019. Retrieved 8 March 2019. With NASA's Commercial Crew Development program, or CCDev 2, and the encouragement of commercial space firms to produce their own vehicles, the number of potential 'space-taxis' has swelled, with virtually every established and up-and-coming space company either producing – or proposing one. https://www.universetoday.com/81819/numerous-companies-propose-possible-space-taxi/
Moskowitz, Clara (28 April 2011). "Four Companies at Forefront of Commercial Space Race". Space.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Four private companies are the leaders in the effort to build commercial spaceships to carry astronauts to low-Earth orbit and the International Space Station after the space shuttles retire. NASA recently handed out the second wave of contracts in its Commercial Crew Development program... https://www.space.com/11511-nasa-commercial-crew-spacecraft.html
Moskowitz, Clara (28 April 2011). "Four Companies at Forefront of Commercial Space Race". Space.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Four private companies are the leaders in the effort to build commercial spaceships to carry astronauts to low-Earth orbit and the International Space Station after the space shuttles retire. NASA recently handed out the second wave of contracts in its Commercial Crew Development program... https://www.space.com/11511-nasa-commercial-crew-spacecraft.html
Bergin, Chris (18 April 2011). "Four companies win big money via NASA's CCDEV-2 awards". NASASpaceFlight.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Blue Origin's $22m award is for their their [sic] biconic-shape capsule, of which very little is currently in the public domain. https://www.nasaspaceflight.com/2011/04/four-companies-win-nasas-ccdev-2-awards/
Sauser, Brittany (22 April 2011). "Private Spacecrafts to Carry Humans Get NASA Funding". MIT Technology Review. Archived from the original on 19 December 2019. Retrieved 8 March 2019. Space Exploration Technologies (SpaceX), which currently has a contract to carry cargo to the International Space Station, will receive $75 million to make its Falcon 9 rocket and Dragon space capsule ready for humans... https://www.technologyreview.com/s/423813/private-spacecrafts-to-carry-humans-get-nasa-funding/
Clark, Stephen (25 April 2011). "Four firms plan to get the most out of NASA investment". Spaceflight Now. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Boeing received the largest Commercial Crew Development award, an agreement valued at $92.3 million, to finish the preliminary design of the CST-100 capsule [...] Sierra Nevada received $20 million in the first CCDev competition in February 2010, using that funding to develop manufacturing tooling, fire a Dream Chaser maneuvering engine and deliver parts of a structural mock-up of the spacecraft. https://spaceflightnow.com/news/n1104/25ccdevgoals/
Clark, Stephen (25 April 2011). "Four firms plan to get the most out of NASA investment". Spaceflight Now. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Boeing received the largest Commercial Crew Development award, an agreement valued at $92.3 million, to finish the preliminary design of the CST-100 capsule [...] Sierra Nevada received $20 million in the first CCDev competition in February 2010, using that funding to develop manufacturing tooling, fire a Dream Chaser maneuvering engine and deliver parts of a structural mock-up of the spacecraft. https://spaceflightnow.com/news/n1104/25ccdevgoals/
Bergin, Chris; Smith, Ron (1 October 2012). "Orbital's Antares closing in on debut launch following pad arrival". NASASpaceFlight.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Orbital and SpaceX won a combined 3.5 billion dollars Commercial Resupply Services (CRS) contract back in 2008... https://www.nasaspaceflight.com/2012/10/orbitals-antares-closing-debut-launch-pad-arrival/
Tann, Nick (8 October 2012). "SpaceX successfully launches first International Space Station re-supply mission". The Baltimore Sun. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Last night, SpaceX launched more than 1,000 pounds of supplies bound for the International Space Station on the first of 12 missions in its 1.6 billion USD contract with NASA. http://darkroom.baltimoresun.com/2012/10/spacex-successfully-launches-first-international-space-station-re-supply-mission/#1
Atkinson, Nancy (3 August 2012). "NASA Announces Winners in Commercial Crew Funding; Which Company Will Get to Space First?". Universe Today. Archived from the original on 8 March 2019. Retrieved 8 March 2019. NASA announced today the winners of the third round of commercial crew development funding, called the Commercial Crew Integrated Capability (CCiCap). [...] NASA said these awards will enable a launch of astronauts from U.S. soil in the next five years. [...] each company negotiated how much work they could get done in the 21-month period that this award covers. https://www.universetoday.com/96593/nasa-announces-winners-in-commercial-crew-funding-which-company-will-get-to-space-first/
Atkinson, Nancy (3 August 2012). "NASA Announces Winners in Commercial Crew Funding; Which Company Will Get to Space First?". Universe Today. Archived from the original on 8 March 2019. Retrieved 8 March 2019. NASA announced today the winners of the third round of commercial crew development funding, called the Commercial Crew Integrated Capability (CCiCap). [...] NASA said these awards will enable a launch of astronauts from U.S. soil in the next five years. [...] each company negotiated how much work they could get done in the 21-month period that this award covers. https://www.universetoday.com/96593/nasa-announces-winners-in-commercial-crew-funding-which-company-will-get-to-space-first/
Boyle, Alan (3 August 2012). "NASA announces $1.1 billion in support for a trio of spaceships". NBC News. Archived from the original on 8 March 2019. Retrieved 8 March 2019. NASA has committed $1.1 billion over the next 21 months to support spaceship development efforts by the Boeing Co., SpaceX and Sierra Nevada Corp., with the aim of having American astronauts flying once more on American spacecraft within five years. /wiki/Alan_Boyle
Hardwood, William (3 August 2012). "NASA awards manned-spacecraft contracts". CNET. Archived from the original on 8 March 2019. Retrieved 8 March 2019. SpaceX was awarded a $440 million contract [...] Boeing won a contract valued at $460 million [...] Nevada was awarded $212.5 million [...] The CCiCap contracts will run between now and May 31, 2014 https://www.cnet.com/news/nasa-awards-manned-spacecraft-contracts/
Malik, Tariq (3 August 2012). "NASA awards $1.1 billion to develop three commercial space taxis". collectSPACE. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Also not included in this latest round of funding was Blue Origin of Kent., Wash., a company owned by billionaire Amazon.com founder Jeff Bezos that is developing private spacecraft for suborbital and orbital flights. The company did receive a NASA funding award in 2011 for its orbital crew vehicle, but wasn't among the seven vying for a spot in the CCiCap round, NASA officials said. http://www.collectspace.com/news/news-080312a.html
Foust, Jeff (18 December 2016). "Bezos Investment in Blue Origin Exceeds $500 Million". Space News. Archived from the original on 18 December 2016. Retrieved 8 March 2019. "We got $25 million from the NASA commercial crew program, and that represents less than 5 percent of what our founder has put into the company," Alexander said. That would mean Bezos' investment in Blue Origin is at least $500 million. /wiki/Jeff_Foust
Hardwood, William (3 August 2012). "NASA awards manned-spacecraft contracts". CNET. Archived from the original on 8 March 2019. Retrieved 8 March 2019. SpaceX was awarded a $440 million contract [...] Boeing won a contract valued at $460 million [...] Nevada was awarded $212.5 million [...] The CCiCap contracts will run between now and May 31, 2014 https://www.cnet.com/news/nasa-awards-manned-spacecraft-contracts/
Bergin, Chris (3 August 2012). "NASA CCiCAP funding for SpaceX, Boeing and SNC's crew vehicles". NASASpaceFlight.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. In the end, Associate Administrator for Human Exploration and Operations Directorate William Gerstenmaier opted to award Boeing with $460m, SpaceX with $440 and SNC with $212.5m. https://www.nasaspaceflight.com/2012/08/nasa-ccicap-funding-spacex-boeing-sncs-crew-vehicles/
Malik, Tariq (3 August 2012). "NASA Awards $1.1 Billion in Support for 3 Private Space Taxis". Space.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. As part of the new agreements, Sierra Nevada will receive $212.5 million, SpaceX will receive $440 million, and Boeing will receive $460 million. https://www.space.com/16890-nasa-private-space-taxis-funding.html
Gerstenmaier, William H. (10 September 2012). "Selection Statement For Commercial Crew Integrated Capability". National Aeronautics and Space Administration. Archived from the original on 10 September 2012. Retrieved 8 March 2019. Four proposals passed the Acceptability Screening and were evaluated by the full PEP [...] ATK Aerospace Systems (ATK) /wiki/William_H._Gerstenmaier
Perrotto, Trent; Thomas, Candrea (10 December 2012). "NASA Awards Contracts In Next Step Toward Safely Launching American Astronauts From U.S. Soil". National Aeronautics and Space Administration. Archived from the original on 8 March 2019. Retrieved 8 March 2019. ...the certification products contracts (CPC) [will ensure] crew transportation systems will meet agency safety requirements and standards to launch American astronauts to the International Space Station from the United States, ending the agency's reliance on Russia for these transportation services. [...] This includes data that will result in developing engineering standards, tests and analyses of the crew transportation systems design. https://www.nasa.gov/centers/kennedy/news/releases/2012/release-20121210.html
Boyle, Alan (19 November 2013). "NASA outlines the final steps in plan for next manned spaceships". NBC News. Archived from the original on 8 March 2019. Retrieved 8 March 2019. NASA expects the final phase of the competition — known as the Commercial Crew Transport Capability program, or CCtCAP — to result in a fleet of commercial spacecraft that are certified to transport crew by 2017. [...] Those same three companies have already been granted about $10 million each for Phase 1 of the CCtCAP certification process, which focuses on flight safety and performance requirements. [...] NASA said applications for Phase 2 funding should be submitted by Jan. 22. /wiki/Alan_Boyle
Grondin, Yves-A. (5 August 2013). "NASA Outlines its Plans for Commercial Crew Certification". NASASpaceFlight.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. ...NASA outlined the next phase of its strategy to enable the certification of commercial crew transportation systems to and from the International Space Station (ISS). [...] Phase 1 of the certification strategy, the Certification Products Contract (CPC) phase, was awarded last December to SpaceX, SNC and Boeing for amounts that did not exceed $10 million per company. https://www.nasaspaceflight.com/2013/08/nasa-outlines-plans-commercial-crew-certification/
Boyle, Alan (19 November 2013). "NASA outlines the final steps in plan for next manned spaceships". NBC News. Archived from the original on 8 March 2019. Retrieved 8 March 2019. NASA expects the final phase of the competition — known as the Commercial Crew Transport Capability program, or CCtCAP — to result in a fleet of commercial spacecraft that are certified to transport crew by 2017. [...] Those same three companies have already been granted about $10 million each for Phase 1 of the CCtCAP certification process, which focuses on flight safety and performance requirements. [...] NASA said applications for Phase 2 funding should be submitted by Jan. 22. /wiki/Alan_Boyle
Grondin, Yves-A. (5 August 2013). "NASA Outlines its Plans for Commercial Crew Certification". NASASpaceFlight.com. Archived from the original on 8 March 2019. Retrieved 8 March 2019. ...NASA outlined the next phase of its strategy to enable the certification of commercial crew transportation systems to and from the International Space Station (ISS). [...] Phase 1 of the certification strategy, the Certification Products Contract (CPC) phase, was awarded last December to SpaceX, SNC and Boeing for amounts that did not exceed $10 million per company. https://www.nasaspaceflight.com/2013/08/nasa-outlines-plans-commercial-crew-certification/
Boyle, Alan (19 November 2013). "NASA outlines the final steps in plan for next manned spaceships". NBC News. Archived from the original on 8 March 2019. Retrieved 8 March 2019. NASA expects the final phase of the competition — known as the Commercial Crew Transport Capability program, or CCtCAP — to result in a fleet of commercial spacecraft that are certified to transport crew by 2017. [...] Those same three companies have already been granted about $10 million each for Phase 1 of the CCtCAP certification process, which focuses on flight safety and performance requirements. [...] NASA said applications for Phase 2 funding should be submitted by Jan. 22. /wiki/Alan_Boyle
Rutkin, Aviva (27 January 2014). "Mini space shuttle gears up to chase astronaut dreams". New Scientist. Archived from the original on 8 March 2019. Retrieved 8 March 2019. Engineers at Sierra Nevada Corporation have announced that the Dream Chaser will make its first orbital flight on 1 November 2016. The Dream Chaser will launch attached to an Atlas V rocket... https://www.newscientist.com/article/dn24950-mini-space-shuttle-gears-up-to-chase-astronaut-dreams/
Atkinson, Nancy (23 January 2014). "Sierra Nevada Dreamchaser Will Launch on First Orbital Flight Test in November 2016". Universe Today. Archived from the original on 8 March 2019. Retrieved 8 March 2019. "Today we're very proud to announce that we have now formally negotiated our orbital spaceflight," said Mark Sirangelo, the head of Sierra Nevada Space Systems. "We have acquired an Atlas V rocket and established a launch date of November 1, 2016... https://www.universetoday.com/108487/sierra-nevada-dreamchaser-will-launch-on-first-orbital-flight-test-in-november-2016/
Associated Press (17 September 2014). "SpaceX, Boeing land NASA contracts to carry astronauts to space". The Japan Times. Archived from the original on 21 May 2019. Retrieved 21 May 2019. On Tuesday, the space agency picked Boeing and SpaceX to transport astronauts to the International Space Station [...] NASA will pay Boeing $4.2 billion and SpaceX $2.6 billion to certify, test and fly their crew capsules. /wiki/Associated_Press
Wall, Mike (17 September 2014). "NASA Picks SpaceX and Boeing to Fly U.S. Astronauts on Private Spaceships". Scientific American. Archived from the original on 21 May 2019. Retrieved 21 May 2019. SpaceX and Boeing are splitting NASA's $6.8 billion Commercial Crew Transportation Capability award, or CCtCap [...] SpaceX will get $2.6 billion and Boeing will receive $4.2 billion, officials said. https://www.scientificamerican.com/article/nasa-picks-spacex-and-boeing-to-fly-u-s-astronauts-on-private-spaceships/?redirect=1
Dean, James (26 September 2014). "Sierra Nevada files protest over NASA crew contract". Florida Today. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Sierra Nevada Corp. has protested NASA's award of contracts worth up to $6.8 billion to Boeing and SpaceX to fly astronauts to the International Space Station. The U.S. Government Accountability Office must rule on the legal challenge by Jan. 5. [...] Sierra Nevada cited "serious questions and inconsistencies in the source selection process." https://www.floridatoday.com/story/tech/science/space/2014/09/26/sierra-nevada-files-protest-nasa-crew-contract/16283213/
Keeney, Laura (3 October 2014). "So Sierra Nevada protested NASA space-taxi contract, but what's next?". The Denver Post. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Space Systems filed the formal protest with the U.S. Government Accountability Office on Sept. 26 over rejection of its bid for NASA's commercial crew contract to shuttle astronauts to the space station. https://www.denverpost.com/2014/10/03/so-sierra-nevada-protested-nasa-space-taxi-contract-but-whats-next/
Rhian, Jason (23 October 2014). "Judge allows NASA to move forward on production of Commercial Crew spacecraft". Spaceflight Insider. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Judge Marian Blank Horn of the United States Court of Federal Claims has cleared the way for NASA to proceed with its plans to have Boeing and SpaceX develop their spacecraft under the Commercial Crew transportation Capability (CCtCap). https://www.spaceflightinsider.com/organizations/sierra-nevada/judge-allows-nasa-move-forward-production-commercial-crew-spacecraft/
Dean, James (22 October 2014). "Judge: NASA can move forward with Boeing, SpaceX". USA Today. Archived from the original on 21 May 2019. Retrieved 21 May 2019. A judge Tuesday allowed NASA to move forward with new contracts to develop private space taxis despite a legal challenge to the deals worth up to $6.8 billion. [...] NASA claimed it "best serves the United States" to enable the commercial crew systems as soon as possible, and that delays to flights planned by 2017 would put the International Space Station at risk. https://www.usatoday.com/story/tech/2014/10/22/judge-nasa-can-move-forward-with-boeing-spacex/17704843/
Dean, James (22 October 2014). "Judge: NASA can move forward with Boeing, SpaceX". USA Today. Archived from the original on 21 May 2019. Retrieved 21 May 2019. A judge Tuesday allowed NASA to move forward with new contracts to develop private space taxis despite a legal challenge to the deals worth up to $6.8 billion. [...] NASA claimed it "best serves the United States" to enable the commercial crew systems as soon as possible, and that delays to flights planned by 2017 would put the International Space Station at risk. https://www.usatoday.com/story/tech/2014/10/22/judge-nasa-can-move-forward-with-boeing-spacex/17704843/
Norris, Guy (11 October 2014). "Why NASA Rejected Sierra Nevada's Commercial Crew Vehicle". Aviation Week & Space Technology. Archived from the original on 27 October 2014. Retrieved 21 May 2019. NASA issued a stop-work order to Boeing and SpaceX on Oct 2, only to rescind it a week later on the grounds that a delay to development of the transportation service, "poses risks to the ISS crew, jeopardizes continued operation of the ISS, would delay meeting critical crew size requirements, and may result in the U.S. failing to perform the commitments it made in its international agreements." https://web.archive.org/web/20141027174620/http://aviationweek.com/space/why-nasa-rejected-sierra-nevadas-commercial-crew-vehicle
Foust, Jeff (5 January 2015). "GAO Denies Sierra Nevada Protest of Commercial Crew Contract". SpaceNews. Archived from the original on 28 May 2024. Retrieved 21 May 2019. "Based on our review of the issues, we concluded that these arguments were not supported by the evaluation record or by the terms of the solicitation," Smith said in the GAO statement. Sierra Nevada, in a statement issued Jan. 5, accepted the decision by the GAO... /wiki/Jeff_Foust
Dean, James (5 January 2015). "Sierra Nevada loses Commercial Crew contract protest". Florida Today. Archived from the original on 21 May 2019. Retrieved 21 May 2019. GAO disagreed with Sierra Nevada's arguments about NASA's evaluation [...] Sierra Nevada also claimed NASA did not adequately review the realism of SpaceX's low bid and its financial resources, among several other issues the GAO concluded "were not supported by the evaluation record or by the terms of the solicitation." https://www.floridatoday.com/story/tech/science/space/2015/01/05/snc-loses-nasa-tcap-bid-protest/21286435/
Rhian, Jason (26 September 2014). "SNC lays off staff, files protest over NASA CCP selections, mulls Dream Chaser's future – Update". Spaceflight Insider. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Sierra Nevada Corporation (SNC) has laid off employees who were working on the company's offering under NASA's Commercial Crew Program (CCP), the Dream Chaser space plane. SNC has also stated that it will continue to develop the spacecraft for possible use with other nations' human-rated space programs... https://www.spaceflightinsider.com/organizations/sierra-nevada/snc-lays-staff-files-protest-nasa-selction-dream-chaser-spacecraft-ccp/
SpaceRef staff (25 September 2014). "Sierra Nevada Dream Chaser Program to Continue". SpaceRef Business. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Sierra Nevada's Mark Sirangelo told the Denver Post the companies plans to go forward with development of the spacecraft and bid on future contracts. The news companies on the heals [sic] of Sierra Nevada laying off 90 people from the Dream Chaser program. http://spaceref.biz/company/sierra-nevada/sierra-nevada-dream-chaser-to-continue.html
Foust, Jeff (25 September 2014). "Sierra Nevada Lays Off Dream Chaser Staff". SpaceNews. Archived from the original on 21 May 2019. Retrieved 21 May 2019. After losing a NASA commercial crew competition earlier this month, Sierra Nevada Corp. (SNC) has laid off about 100 employees who had been working on its Dream Chaser vehicle, the company confirmed Sept. 24. /wiki/Jeff_Foust
Davenport, Christian; Fung, Brian (14 January 2016). "Sierra Nevada Corp. joins SpaceX and Orbital ATK in winning NASA resupply contracts". The Washington Post. Archived from the original on 21 May 2019. Retrieved 21 May 2019. The nation's space agency selected three commercial companies for the next round of missions to resupply the International Space Station, giving a vote of confidence to incumbents SpaceX and Orbital ATK and choosing a new player, Sierra Nevada Corp. https://www.washingtonpost.com/news/the-switch/wp/2016/01/14/nasa-expected-to-soon-announce-contracts-to-resupply-the-international-space-station/
Calandrelli, Emily (14 January 2016). "NASA Adds Sierra Nevada's Dream Chaser To ISS Supply Vehicles". TechCrunch. Archived from the original on 1 February 2016. Retrieved 21 May 2019. The winners, Orbital ATK, SpaceX, and the newcomer Sierra Nevada Corporation, will be responsible for providing new cargo, disposing of unneeded cargo, and safely bringing back research samples from the International Space Station (ISS). https://techcrunch.com/2016/01/14/nasa-adds-sierra-nevadas-dream-chaser-to-iss-supply-vehicles/
Foust, Jeff (21 January 2015). "NASA Details Why Boeing, SpaceX Won Commercial Crew". SpaceNews. Archived from the original on 28 May 2024. Retrieved 21 May 2019. SpaceX, though, planned to complete certification earlier than either Boeing or Sierra Nevada, giving it more margin to achieve NASA's goal of certification by the end of 2017. /wiki/Jeff_Foust
Vincent, James (12 May 2016). "Astronauts won't be flying to space in Boeing's Starliner until 2018". The Verge. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Boeing's executive vice president Leanne Caret made the announcement, reports GeekWire, telling investors at a briefing: "We're working toward our first unmanned flight in 2017, followed by a manned astronaut flight in 2018." https://www.theverge.com/2016/5/12/11662214/boeing-starliner-iss-delay-2018
Boyle, Alan (11 May 2016). "Boeing's Starliner schedule for sending astronauts into orbit slips to 2018". GeekWire. Archived from the original on 21 May 2019. Retrieved 21 May 2019. ...it's been working through challenges related to the mass of the spacecraft and aeroacoustic issues related to integration with its United Launch Alliance Atlas 5 launch vehicle. In a follow-up to Caret's comments, Boeing spokeswoman Rebecca Regan told GeekWire that those factors contributed to the schedule slip. https://www.geekwire.com/2016/boeing-starliner-schedule-astronauts-slips-2018/
Boyle, Alan (12 December 2016). "NASA confirms delay in commercial crew flights to 2018, pushing the envelope". GeekWire. Archived from the original on 21 May 2019. Retrieved 21 May 2019. NASA has confirmed that the commercial space taxis being developed by SpaceX and the Boeing Co. will start carrying astronauts to the International Space Station no earlier than 2018... https://www.geekwire.com/2016/nasa-confirms-delay-spacex-boeing-2018-commercial-crew/
Grush, Loren (12 December 2016). "SpaceX officially delays first crewed flight of its Dragon capsule for NASA". The Verge. Archived from the original on 21 May 2019. Retrieved 21 May 2019. In the wake of its September 1st rocket explosion, SpaceX has officially delayed the first crewed flight of its Crew Dragon vehicle [...] the first flight of the Crew Dragon with people on board is now slated to take place in May of 2018... https://www.theverge.com/2016/12/12/13928844/spacex-crew-dragon-delay-nasa-commercial-crew-program-2018
Grush, Loren (12 December 2016). "SpaceX officially delays first crewed flight of its Dragon capsule for NASA". The Verge. Archived from the original on 21 May 2019. Retrieved 21 May 2019. In the wake of its September 1st rocket explosion, SpaceX has officially delayed the first crewed flight of its Crew Dragon vehicle [...] the first flight of the Crew Dragon with people on board is now slated to take place in May of 2018... https://www.theverge.com/2016/12/12/13928844/spacex-crew-dragon-delay-nasa-commercial-crew-program-2018
Malik, Tariq (1 September 2016). "Launchpad Explosion Destroys SpaceX Falcon 9 Rocket, Satellite in Florida". Space.com. Archived from the original on 21 May 2019. Retrieved 21 May 2019. A SpaceX Falcon 9 rocket and its commercial satellite payload were destroyed by an explosion at their launchpad in Florida early Thursday (Sept. 1) during a typically routine test. https://www.space.com/33929-spacex-falcon-9-rocket-explodes-on-launch-pad.html
Berger, Eric (28 January 2017). "Technical troubles likely to delay commercial crew flights until 2019". Ars Technica. Archived from the original on 21 May 2019. Retrieved 21 May 2019. NASA currently has contracts with Russia through 2018 to get its astronauts to the station. However, a delay of test flights into 2019 would necessarily push the first "operational" commercial crew flights into spring or summer of 2019 at a minimum. https://arstechnica.com/science/2017/01/sources-neither-boeing-nor-spacex-likely-ready-to-fly-crews-until-2019/
Grush, Loren (16 February 2017). "SpaceX and Boeing probably won't be flying astronauts to the station until 2019, report suggests". The Verge. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Because of the likelihood for delays, the GAO report recommends that NASA come up with a backup plan for getting its astronauts to the ISS beyond 2018. https://www.theverge.com/2017/2/16/14640618/nasa-spacex-boeing-astronaut-iss-2018
Berger, Eric (18 January 2017). "As leadership departs, NASA quietly moves to buy more Soyuz seats". Ars Technica. Archived from the original on 21 May 2019. Retrieved 21 May 2019. a new solicitation filed by NASA on Tuesday reveals that the agency is indeed seeking to purchase Soyuz seats for 2019 (NASA will negotiate with Boeing for these additional seats, which Boeing received from Russia's Energia as compensation for the settlement of a lawsuit involving the Sea Launch joint venture). https://arstechnica.com/science/2017/01/nasa-formally-seeks-option-to-buy-additional-soyuz-seats-for-2019/
Foust, Jeff (28 February 2017). "NASA signs agreement with Boeing for Soyuz seats". SpaceNews. Archived from the original on 22 September 2018. Retrieved 21 May 2019. NASA has quietly signed a contract with Boeing for up to five additional Soyuz seats to provide for both additional U.S. crewmembers on the International Space Station and margin for commercial crew delays. /wiki/Jeff_Foust
Zraick, Karen (3 August 2018). "NASA Names Astronauts for Boeing and SpaceX Flights to International Space Station". The New York Times. Archived from the original on 4 August 2018. Retrieved 21 May 2019. NASA has named the astronauts chosen to fly on commercial spacecraft made by Boeing and SpaceX to and from the International Space Station, the research laboratory that orbits around Earth. https://www.nytimes.com/2018/08/03/science/nasa-astronauts-boeing-spacex.html
Sheetz, Michael (4 August 2018). "These are the astronauts NASA assigned for SpaceX and Boeing to launch the first crews from the US since 2011". CNBC. Archived from the original on 21 May 2019. Retrieved 21 May 2019. NASA named five astronauts to the first two Boeing flights and four to the first two SpaceX flights. https://www.cnbc.com/2018/08/04/nasa-commercial-crew-the-astronauts-spacex-and-boeing-will-launch.html
Dean, James (3 August 2018). "NASA names first astronauts to fly SpaceX, Boeing ships from Florida". USA Today. Archived from the original on 21 May 2019. Retrieved 21 May 2019. NASA on Friday named the astronaut test pilots who will be the first to fly SpaceX and Boeing capsules launched from Florida to the International Space Station, within a year or less, according to updated schedules. https://www.usatoday.com/story/news/nation-now/2018/08/03/nasa-first-astronauts-spacex-boeing-ships/896846002/
Harwood, William (4 October 2018). "NASA revises launch targets for Boeing, SpaceX crew ships". CBS News. Archived from the original on 21 May 2019. Retrieved 21 May 2019. The first unpiloted test flight of a SpaceX commercial Dragon capsule intended to eventually ferry astronauts to and from the International Space Station is moving to January, NASA announced Thursday. The first unpiloted test flight of a Boeing Starliner commercial crew ship is now targeted for the March timeframe. https://www.cbsnews.com/news/nasa-revises-launch-targets-boeing-spacex-crew-ships/
Agence France-Presse (5 October 2018). "First SpaceX mission with astronauts set for June 2019: NASA". Phys.org. Archived from the original on 21 May 2019. Retrieved 21 May 2019. NASA has announced the first crewed flight by a SpaceX rocket to the International Space Station (ISS) is expected to take place in June 2019. [...] A flight on Boeing spacecraft is set to follow in August 2019. /wiki/Agence_France-Presse
Davis, Jason (2 March 2019). "Crew Dragon Safely on the Way to International Space Station". The Planetary Society. Archived from the original on 21 May 2019. Retrieved 21 May 2019. SpaceX's Crew Dragon has successfully launched on its maiden voyage! The spacecraft lifted off as scheduled on 2 March at 02:49 EST (07:49 UTC). http://www.planetary.org/blogs/jason-davis/crew-dragon-launches.html
Malik, Tariq (8 March 2019). "SpaceX's Crew Dragon Looks Just Like a Toasted Marshmallow After Fiery Re-Entry". Space.com. Archived from the original on 21 May 2019. Retrieved 21 May 2019. When SpaceX launched its first Crew Dragon spacecraft to the International Space Station last week, the gleaming white vehicle soared into space on its maiden voyage. Now, Crew Dragon is back, and it doesn't look so new. SpaceX's Crew Dragon returned to Earth today (March 8) with a smooth splashdown in the Atlantic Ocean... https://www.space.com/spacex-crew-dragon-looks-like-toasted-marshmallow.html
Wattles, Jackie (8 March 2019). "SpaceX Crew Dragon, built to carry humans, returns home from ISS". CNN. Archived from the original on 21 May 2019. Retrieved 21 May 2019. NASA officials confirmed around 2:30 am ET that the capsule successfully detached from the space station. [...] and it splash down in the Atlantic Ocean around 8:45 am ET. https://edition.cnn.com/2019/03/08/tech/spacex-crew-dragon-return-demo-mission/index.html
O'Callaghan, Jonathan (22 April 2019). "SpaceX's Crew Dragon Suffers 'Anomaly' And May Have Exploded During A Test". Forbes. Archived from the original on 21 May 2019. Retrieved 21 May 2019. SpaceX's historic Crew Dragon spacecraft that launched for the first time last month appears to have exploded, according to reports, potentially delaying the return to flight of humans from American soil. On Saturday, April 20, an explosion was reported at a test stand at SpaceX's Landing Zone 1 in Cape Canaveral, Florida. https://www.forbes.com/sites/jonathanocallaghan/2019/04/22/spacexs-crew-dragon-suffers-anomaly-and-may-have-exploded-during-a-test/#73cec3643b20
Wall, Mike (21 April 2019). "SpaceX Crew Dragon Accident Another Bump in the Road for Commercial Crew". Space.com. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Nobody was injured, but the capsule — which flew a successful uncrewed demonstration mission to the International Space Station (ISS) just last month — may have incurred serious damage. https://www.space.com/spacex-dragon-accident-nasa-commercial-crew.html
Berger, Eric (3 May 2019). "Dragon was destroyed just before the firing of its SuperDraco thrusters". Ars Technica. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Koenigsmann said the "anomaly" occurred during a series of tests with the spacecraft, approximately one-half second before the firing of the SuperDraco thrusters. At that point, he said, "There was an anomaly and the vehicle was destroyed." [...] Before this accident, SpaceX and NASA had been targeting early October for the first crewed Dragon mission to the station. Now, that will almost certainly be delayed by at least several months into 2020. https://arstechnica.com/science/2019/05/dragon-was-destroyed-just-before-the-firing-of-its-superdraco-thrusters/
Berger, Eric (3 May 2019). "Dragon was destroyed just before the firing of its SuperDraco thrusters". Ars Technica. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Koenigsmann said the "anomaly" occurred during a series of tests with the spacecraft, approximately one-half second before the firing of the SuperDraco thrusters. At that point, he said, "There was an anomaly and the vehicle was destroyed." [...] Before this accident, SpaceX and NASA had been targeting early October for the first crewed Dragon mission to the station. Now, that will almost certainly be delayed by at least several months into 2020. https://arstechnica.com/science/2019/05/dragon-was-destroyed-just-before-the-firing-of-its-superdraco-thrusters/
Foust, Jeff (20 August 2019). "Commercial crew providers prepare for fall test flights". SpaceNews. Retrieved 21 August 2019. However, both an in-flight abort test and the Demo-2 crewed flight test were delayed after the Demo-1 spacecraft, being prepared for the in-flight abort test, was destroyed during preparations for a static-fire test in April at Cape Canaveral. /wiki/Jeff_Foust
Foust, Jeff (2 August 2018). "Boeing delays Starliner uncrewed test flight after abort engine test problem". SpaceNews. Archived from the original on 25 May 2020. Retrieved 25 May 2020. Boeing now plans to carry out an uncrewed test flight of its CST-100 Starliner commercial crew vehicle late this year or early next year as it addresses a problem found during a recent test of the spacecraft's abort engines. That revised schedule will push back a crewed test flight of the vehicle to the middle of 2019, said John Mulholland, vice president and program manager of Boeing's commercial crew program... /wiki/Jeff_Foust
Mosher, Dave (3 August 2018). "Leaky valves on Boeing's new spacecraft are increasing the risk that NASA astronauts could lose access to the space station". Business Insider. Archived from the original on 25 May 2020. Retrieved 25 May 2020. But the agency is staring down a real possibility that it might not be able to send people into space after next year. That risk likely increased after Boeing discovered a problem in a new spacecraft system the company designed for NASA. The issue – a fuel leak – appeared on June 2, as Ars Technica first reported, when Boeing test-fired four thrusters designed to propel the Starliner away from a potential launchpad emergency. https://www.businessinsider.com/boeing-starliner-fuel-leak-risks-nasa-access-iss-2018-8
Johnson, Eric M. (21 March 2019). "Boeing delays by months test flights for U.S. human space program: sources". Reuters. Archived from the original on 21 May 2019. Retrieved 21 May 2019. Boeing's first test flight was slated for April but it has been pushed to August, according to two people with direct knowledge of the matter. The new schedule means that Boeing's crewed mission, initially scheduled for August, will be delayed until November. https://www.reuters.com/article/us-space-boeing/boeing-delays-by-months-test-flights-for-u-s-human-space-program-sources-idUSKCN1R12QR
Haynes, Korey (21 March 2019). "Boeing's Starliner test flight delayed by months". Astronomy. Archived from the original on 21 May 2019. Retrieved 21 May 2019. ...the company will no longer launch an uncrewed test flight to the International Space Station in April, Reuters has reported. The flight is being pushed back to August. [...] This Starliner schedule slip will also delay Boeing's first crewed test flight, according to the same reporting, from August to November. http://www.astronomy.com/news/2019/03/boeings-starliner-test-flight-may-be-delayed-by-months
Joy, Rachel (2 August 2019). "Boeing readies 'astronaut' for likely October test launch". Florida Today. Archived from the original on 21 August 2019. Retrieved 21 August 2019. ...which will fly on the inaugural flight of the Starliner spacecraft now slated to launch late September or early October from Cape Canaveral Air Force Station. https://www.floridatoday.com/story/tech/science/space/2019/08/02/boeing-readies-astronaut-test-launch/1867717001/
Bartels, Meghan (4 November 2019). "Boeing Tests Starliner Spacecraft's Launch Abort System for Rocket Emergencies". Space.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. Boeing's CST-100 Starliner crewed vehicle aced a crucial safety test this morning (Nov. 4) in the New Mexico desert. https://www.space.com/boeing-starliner-pad-abort-test-success.html
Etherington, Darrell (5 November 2019). "Boeing's Starliner crew spacecraft launch pad abort test is a success". TechCrunch. Archived from the original on 25 May 2020. Retrieved 25 May 2020. NASA's commercial crew partner Boeing has achieved a key milestone on the way to actually flying astronauts aboard its CST-100 Starliner: Demonstrating that its launch pad abort system works as designed, which is a key safety system that NASA requires to be in place before the aerospace company can put astronauts inside the Starliner. https://techcrunch.com/2019/11/04/boeings-starliner-crew-spacecraft-launch-pad-abort-test-is-a-success/
Foust, Jeff (7 November 2019). "Missing pin blamed for Boeing pad abort parachute anomaly". SpaceNews. Archived from the original on 25 May 2020. Retrieved 25 May 2020. Boeing said Nov. 7 that a misplaced pin prevented a parachute from deploying during a pad abort test of its CST-100 Starliner vehicle three days earlier, the only flaw in a key test of that commercial crew vehicle. /wiki/Jeff_Foust
Clark, Stephen (7 November 2019). "Boeing identifies cause of chute malfunction, preps for Starliner launch". Spaceflight Now. Archived from the original on 25 May 2020. Retrieved 25 May 2020. Only two of the three main parachutes deployed, an issue Boeing has attributed to the lack of a secure connection between the pilot chute and one of the main chutes. https://spaceflightnow.com/2019/11/07/boeing-identifies-cause-of-chute-malfunction-continues-preps-for-first-starliner-launch/
Chang, Kenneth (20 December 2019). "Boeing Starliner Ends Up in Wrong Orbit After Clock Problem". The New York Times. Archived from the original on 25 May 2020. Retrieved 25 May 2020. As an Atlas 5 rocket arced upward into the pre-dawn sky from Cape Canaveral in Florida on Friday morning [...] On top of the rocket was Starliner, a capsule built by Boeing, part of a NASA strategy to delegate to private companies to handle the astronaut transportation. [...] The mission will now be cut short, without docking at the International Space Station and likely delaying plans that are already a couple of years behind schedule. [...] the spacecraft's clock was set to the wrong time, and a flawed thruster burn pushed the capsule into the wrong orbit. https://www.nytimes.com/2019/12/20/science/boeing-starliner-launch.html
Weitering, Hanneke (8 February 2020). "Boeing's 2nd Starliner software glitch could have led to an in-space collision". Space.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. NASA Administrator Jim Bridenstine said that an independent review team has identified several issues during the Orbital Flight Test (OFT) mission, particularly when it comes to the spacecraft's software. Along with the previously disclosed error with Starliner's onboard timer, a second software issue could have potentially led to a slight but problematic collision of two of the spacecraft's components, investigators determined. https://www.space.com/boeing-starliner-2nd-software-glitch-potential-collision.html
Clark, Stephen (28 February 2020). "Boeing says thorough testing would have caught Starliner software problems". Spaceflight Now. Archived from the original on 25 May 2020. Retrieved 25 May 2020. Boeing missed a pair of software errors during the Starliner's Orbital Flight Test. One prevented the spacecraft from docking with the International Space Station, and the other could have resulted in catastrophic damage to the capsule during its return to Earth. https://spaceflightnow.com/2020/02/28/boeing-says-thorough-testing-would-have-caught-starliner-software-problems/
"High-visibility mishap" and "high-visibility close call" are designations which describe incidents that impact the mission's spacecraft and/or crew with a high degree of public, media, and/or political attention.[88][89] "High-visibility close call" had previously been used to describe an aborted EVA during Expedition 36.[90][91]
Berger, Eric (6 March 2020). "NASA declares Starliner mishap a "high visibility close call"". Ars Technica. Archived from the original on 25 May 2020. Retrieved 25 May 2020. NASA chief of human spaceflight Doug Loverro said Friday that he decided to escalate the incident. So he designated Starliner's uncrewed mission, during which the spacecraft flew a shortened profile and did not attempt to dock with the International Space Station, as a "high visibility close call." This relatively rare designation for NASA's human spaceflight program falls short of "loss of mission" but is nonetheless fairly rare. https://arstechnica.com/science/2020/03/nasa-declares-starliner-mishap-a-high-visibility-close-call/
Carrazana, Chabeli (6 March 2020). "Boeing had 49 gaps in testing for its astronaut capsule before failed flight, independent review finds". Orlando Sentinel. Archived from the original on 25 May 2020. Retrieved 25 May 2020. An independent review of the decisions that led to a failed test of Boeing's Starliner astronaut capsule found systematic and widespread missteps in the legacy company's testing procedures and software development [...] NASA has declared Boeing's mission a "high visibility close call" mishap... https://www.orlandosentinel.com/space/os-bz-boeing-starliner-investigation-result-20200306-imofjq5ifvgipo54t742spvhu4-story.html
"NASA Invites Media to Prelaunch, Launch Activities for Boeing's Orbital Flight Test-2". NASA (Press release). 3 February 2021. Retrieved 4 February 2021. https://www.nasa.gov/press-release/nasa-invites-media-to-prelaunch-launch-activities-for-boeing-s-orbital-flight-test-2
Davenport, Christian (7 April 2020). "After botched test flight, Boeing will refly its Starliner spacecraft for NASA". The Washington Post. Archived from the original on 25 May 2020. Retrieved 25 May 2020. The repeat flight likely will occur sometime in October or November, meaning the company probably won't fly a mission with astronauts on board this year [...] Repeating the mission and investigating other problems with Starliner is an expensive proposition: Earlier this year, Boeing said it was taking a $410 million charge to offset the cost. https://www.washingtonpost.com/technology/2020/04/06/boeing-starliner-test-repeat/
Clark, Stephen (6 April 2020). "After problem-plagued test flight, Boeing will refly crew capsule without astronauts". Spaceflight Now. Archived from the original on 25 May 2020. Retrieved 25 May 2020. Boeing told investors earlier this year it was taking a $410 million charge against its earnings to cover the expected costs of a second unpiloted test flight. [...] "We have chosen to refly our Orbital Flight Test to demonstrate the quality of the Starliner system," Boeing said in a statement [Monday]. "Flying another uncrewed flight will allow us to complete all flight test objectives and evaluate the performance of the second Starliner vehicle at no cost to the [taxpayer"] https://spaceflightnow.com/2020/04/06/after-problem-plagued-test-flight-boeing-will-refly-crew-capsule-without-astronauts/
TASS staff (13 May 2020). "Роскосмос подтвердил подписание контракта на доставку астронавта NASA на корабле "Союз"". TASS (in Russian). Archived from the original on 25 May 2020. Retrieved 25 May 2020. Roscosmos and NASA signed a contract for the delivery of one American astronaut on a crewed Soyuz MS spacecraft in Autumn 2020. [...] The head of NASA, Jim Bridenstein [...] also admitted the possibility of buying a second place. https://tass.ru/kosmos/8456907
Clark, Stephen (12 May 2020). "NASA inks deal with Roscosmos to ensure continuous U.S. presence on space station". Spaceflight Now. Archived from the original on 25 May 2020. Retrieved 25 May 2020. "To ensure the agency keeps its commitment for safe operations via a continuous U.S. presence aboard the International Space Station until commercial crew capabilities are routinely available, NASA has completed negotiations with the State Space Corporation Roscosmos to purchase one additional Soyuz seat for a launch this fall," NASA said in a statement Tuesday. [...] NASA has not ruled out paying Russia's space agency for an additional Soyuz seat on a launch next April. https://spaceflightnow.com/2020/05/12/nasa-inks-deal-with-roscosmos-to-ensure-continuous-u-s-presence-on-space-station/
TASS staff (13 May 2020). "Роскосмос подтвердил подписание контракта на доставку астронавта NASA на корабле "Союз"". TASS (in Russian). Archived from the original on 25 May 2020. Retrieved 25 May 2020. Roscosmos and NASA signed a contract for the delivery of one American astronaut on a crewed Soyuz MS spacecraft in Autumn 2020. [...] The head of NASA, Jim Bridenstein [...] also admitted the possibility of buying a second place. https://tass.ru/kosmos/8456907
Clark, Stephen (12 May 2020). "NASA inks deal with Roscosmos to ensure continuous U.S. presence on space station". Spaceflight Now. Archived from the original on 25 May 2020. Retrieved 25 May 2020. "To ensure the agency keeps its commitment for safe operations via a continuous U.S. presence aboard the International Space Station until commercial crew capabilities are routinely available, NASA has completed negotiations with the State Space Corporation Roscosmos to purchase one additional Soyuz seat for a launch this fall," NASA said in a statement Tuesday. [...] NASA has not ruled out paying Russia's space agency for an additional Soyuz seat on a launch next April. https://spaceflightnow.com/2020/05/12/nasa-inks-deal-with-roscosmos-to-ensure-continuous-u-s-presence-on-space-station/
Atkinson, Ian (17 January 2020). "SpaceX conducts successful Crew Dragon In-Flight Abort Test". NASASpaceFlight.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. SpaceX successfully launched a unique Falcon 9 rocket at LC-39A for the in-flight abort test of their Crew Dragon spacecraft. The uncrewed test flight saw the spacecraft demonstrate its ability to escape a failing rocket mid-flight. Sunday's launch occurred at 10:30 AM Eastern, with a successful test resulting in the safe splashdown of the Dragon vehicle. https://www.nasaspaceflight.com/2020/01/spacex-crew-dragon-in-flight-abort-test/
Sheetz, Michael (19 January 2020). "Fiery SpaceX test of Crew Dragon capsule was 'picture perfect,' Elon Musk says". CNBC. Archived from the original on 25 May 2020. Retrieved 25 May 2020. SpaceX completed its last major test before flying astronauts to space on Sunday, in a critical high-speed mission that lasted mere minutes. [...] It's a crucial milestone for Musk's space company, as it will be key in determining whether NASA certifies the company's capsule to begin flying the agency's astronauts. https://www.cnbc.com/2020/01/19/spacex-livestream-crew-dragon-in-flight-abort-launch-on-a-falcon-9.html
Grush, Loren (19 January 2020). "SpaceX successfully tests escape system on new spacecraft — while destroying a rocket". The Verge. Archived from the original on 25 May 2020. Retrieved 25 May 2020. On Sunday morning, SpaceX successfully launched one of its last big flight tests for NASA, a launch that could pave the way for the company to carry passengers into space later this year. [...] With this test now complete, the next big flight of the Crew Dragon will have people on board: NASA astronauts Bob Behnken and Doug Hurley. https://www.theverge.com/2020/1/18/21070589/spacex-crew-dragon-in-flight-abort-test-falcon-9-watch-live
Grush, Loren (19 January 2020). "SpaceX successfully tests escape system on new spacecraft — while destroying a rocket". The Verge. Archived from the original on 25 May 2020. Retrieved 25 May 2020. On Sunday morning, SpaceX successfully launched one of its last big flight tests for NASA, a launch that could pave the way for the company to carry passengers into space later this year. [...] With this test now complete, the next big flight of the Crew Dragon will have people on board: NASA astronauts Bob Behnken and Doug Hurley. https://www.theverge.com/2020/1/18/21070589/spacex-crew-dragon-in-flight-abort-test-falcon-9-watch-live
Davenport, Christian (24 September 2021). "Nearly two months after discovering a problem with its Starliner spacecraft, Boeing is still searching for answers". The Washington Post. Retrieved 27 September 2021. https://www.washingtonpost.com/technology/2021/09/24/boeingnasastarlinerdelay
Josh Dinner (25 May 2022). "Touchdown! Boeing's Starliner returns to Earth from space station". Space.com. Retrieved 26 May 2022. https://www.space.com/boeing-starliner-oft-2-landing-success
Herridge, Linda (28 February 2022). "NASA Awards SpaceX Additional Crew Flights to Space Station". NASA. Retrieved 3 March 2022. https://www.nasa.gov/feature/nasa-awards-spacex-additional-crew-flights-to-space-station
Foust, Jeff (1 September 2022). ""NASA and SpaceX finalize extension of commercial crew contract"". spacenews.com. Retrieved 1 October 2022. https://spacenews.com/nasa-and-spacex-finalize-extension-of-commercial-crew-contract/
Associated Press (17 September 2014). "SpaceX, Boeing land NASA contracts to carry astronauts to space". The Japan Times. Archived from the original on 21 May 2019. Retrieved 21 May 2019. On Tuesday, the space agency picked Boeing and SpaceX to transport astronauts to the International Space Station [...] NASA will pay Boeing $4.2 billion and SpaceX $2.6 billion to certify, test and fly their crew capsules. /wiki/Associated_Press
Wall, Mike (17 September 2014). "NASA Picks SpaceX and Boeing to Fly U.S. Astronauts on Private Spaceships". Scientific American. Archived from the original on 21 May 2019. Retrieved 21 May 2019. SpaceX and Boeing are splitting NASA's $6.8 billion Commercial Crew Transportation Capability award, or CCtCap [...] SpaceX will get $2.6 billion and Boeing will receive $4.2 billion, officials said. https://www.scientificamerican.com/article/nasa-picks-spacex-and-boeing-to-fly-u-s-astronauts-on-private-spaceships/?redirect=1
Malik, Tariq (26 June 2019). "This Is SpaceX's 1st Crewed Dragon Spaceship Destined for Space". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. SpaceX's Crew Dragon, a crewed version of the company's robotic Dragon cargo ship, is one of two commercial space taxis that NASA will use to ferry astronauts to and from the International Space Station. Boeing's CST-100 Starliner is the other. Both spacecraft are designed to carry up to seven astronauts. https://web.archive.org/web/20190821171941/https://www.space.com/41006-spacex-first-crew-dragon-spacecraft-test-photos.html
Reichhardt 2018, "Although the ships seem like a nod to the past—Apollo-style "capsules" instead of the spaceplanes astronauts rode to orbit for 30 years [...] Both the Starliner and Crew Dragon will travel to the station and dock automatically, with no astronaut input. (The crew can take manual control if something goes wrong.)" - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
Wall 2018, "("CST," by the way, stands for "crew space transportation.") Starliner also features sleek touch-screen displays and has about the same amount of internal volume as the SpaceX capsule." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Wall 2018, "("CST," by the way, stands for "crew space transportation.") Starliner also features sleek touch-screen displays and has about the same amount of internal volume as the SpaceX capsule." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Howell 2018, "The Starliner has a diameter of 15 feet (4.5 meters); a length of 16.5 feet (5 m), which includes the service module; and a volume of about 390 cubic feet (11 cubic md)." - Howell, Elizabeth (8 August 2018). "How Boeing's Commercial CST-100 Starliner Spacecraft Works". Space.com. Archived from the original on 26 May 2020. Retrieved 26 May 2020. https://www.space.com/41360-how-boeing-starliner-commercial-spacecraft-works.html
Wall 2018, "The gumdrop-shaped cargo Dragon is 14.4 feet tall and 12 feet wide at the base (4.4 by 3.7 meters), with 390 cubic feet (11 cubic meters) of internal volume." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Malik, Tariq (26 June 2019). "This Is SpaceX's 1st Crewed Dragon Spaceship Destined for Space". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. SpaceX's Crew Dragon, a crewed version of the company's robotic Dragon cargo ship, is one of two commercial space taxis that NASA will use to ferry astronauts to and from the International Space Station. Boeing's CST-100 Starliner is the other. Both spacecraft are designed to carry up to seven astronauts. https://web.archive.org/web/20190821171941/https://www.space.com/41006-spacex-first-crew-dragon-spacecraft-test-photos.html
Reichhardt 2018, "Seating Capacity: Up to 7 NASA required that each vehicle be able to transport four people to and from the station. A fifth seat is available on both vehicles. Each company advertises a seating capacity of seven." - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
NASA extended this to 240 days for Crew-8 to allow it to support the CFT /wiki/SpaceX_Crew-8
Howell 2018, "Once the Starliner is attached to the space station, it's designed to stay there for 210 days — ample time to allow for the usual crew stays of six months, or 180 days." - Howell, Elizabeth (8 August 2018). "How Boeing's Commercial CST-100 Starliner Spacecraft Works". Space.com. Archived from the original on 26 May 2020. Retrieved 26 May 2020. https://www.space.com/41360-how-boeing-starliner-commercial-spacecraft-works.html
Etherington, Darrell (18 April 2020). "NASA and SpaceX set historic first astronaut launch for May 27". TechCrunch. Archived from the original on 26 May 2020. Retrieved 26 May 2020. That Crew Dragon, which is the fully operational version, is designed for stays of at least 210 days, and the crew complement of four astronauts, including three from NASA and one from Japan's space agency, is already determined. https://techcrunch.com/2020/04/17/nasa-and-spacex-set-historic-first-astronaut-launch-for-may-27/
Burghardt, Michael; Ingham, Jay; Lembeck, Michael F.; Reiley, Keith; Wood, Michael (1 May 2013). "Design Considerations for a Commercial Crew Transportation System" (PDF). The Boeing Company. p. 3. Archived from the original (PDF) on 1 May 2013. Retrieved 26 May 2020. The CST 100 can operate autonomously for up to 60 hours of free-flight [...] The vehicle can stay docked to a host complex for up to 210 days... https://web.archive.org/web/20130501135247/http://www.boeing.com/assets/pdf/defense-space/space/ccts/docs/Space_2011_Boeing.pdf
Reichhardt 2018, "Designers are working to a challenging safety standard: a 1-in-270 chance of a fatal accident, as compared to the 1-in-90 chance calculated for the space shuttle by the time it retired in 2011." - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
"Sealed with Care – A Q&A". NASA. 3 August 2020. Retrieved 3 October 2022. https://www.nasa.gov/feature/glenn/2020/sealed-with-care-a-qa
Szondy, David (4 April 2019). "First manned flight test of Boeing's Starliner to the ISS extended, but launch delayed". New Atlas. Archived from the original on 21 August 2019. Retrieved 21 August 2019. The Starliner is designed to be flown up to 10 times before it needs replacement [...] the new NASA Docking System (NDS) that will be used to dock with the ISS... https://newatlas.com/nasa-extends-boeing-first-manned-mission/59146/
"Sealed with Care – A Q&A". NASA. 3 August 2020. Retrieved 3 October 2022. https://www.nasa.gov/feature/glenn/2020/sealed-with-care-a-qa
Speed, Richard (4 March 2019). "SpaceX Crew Dragon: Launched and docked. Now, about that splashdown..." The Register. Archived from the original on 21 August 2019. Retrieved 21 August 2019. Another very important difference is the nose cone, which hinges to reveal the NASA Docking System (NDS). The cargo-only Dragon uses the larger Common Berthing Mechanism (CBM) for docking... https://www.theregister.co.uk/2019/03/04/demo1_spacex_launch/
Wall 2018, "Crew Dragon is a modified version of its cargo counterpart, and will also launch atop the Falcon 9." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Gray, Tyler (9 March 2020). "CRS-20 – Final Dragon 1 arrives at the ISS". NASASpaceFlight.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. The first iteration of SpaceX's Dragon has successfully flown twenty missions to the ISS to date [...] CRS-20 is the last flight of the first-generation Dragon spacecraft, with the cargo version of the upgraded Dragon 2 spacecraft expected to take over services next year as part of Phase 2 of the CRS program, also known as CRS2. https://www.nasaspaceflight.com/2020/03/spacex-final-dragon-1-mission-iss/
Wall 2018, "The gumdrop-shaped cargo Dragon is 14.4 feet tall and 12 feet wide at the base (4.4 by 3.7 meters), with 390 cubic feet (11 cubic meters) of internal volume." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Reichhardt 2018, "Diameter: 12.1 ft. Height: 23.6 ft. Dimensions include Dragon's cargo "trunk."" - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
Wall 2018, "Reusable?: Yes, Dragons are reusable, although test flights will fly new vehicles. Cargo trunk is discarded after each flight." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Wall 2018, "Reusable?: Yes, Dragons are reusable, although test flights will fly new vehicles. Cargo trunk is discarded after each flight." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Sheetz, Michael (10 March 2020). "SpaceX on track to launch first NASA astronauts in May, president says". CNBC. Archived from the original on 25 May 2020. Retrieved 25 May 2020. Shotwell also noted that SpaceX is planning to reuse its Crew Dragon capsules. That was in doubt previously, as the leader of NASA's Commercial Crew program said in 2018 that SpaceX would use a new capsule each time the company flew the agency's astronauts. "We can fly crew more than once on a Crew Dragon," Shotwell said. "I'm pretty sure NASA is going to be okay with reuse." https://www.cnbc.com/2020/03/10/spacex-aiming-for-may-astronaut-launch-will-reuse-crew-dragon.html
Sheetz, Michael (10 March 2020). "SpaceX on track to launch first NASA astronauts in May, president says". CNBC. Archived from the original on 25 May 2020. Retrieved 10 March 2020. https://www.cnbc.com/2020/03/10/spacex-aiming-for-may-astronaut-launch-will-reuse-crew-dragon.html
"NASA agrees to fly astronauts on reused Crew Dragon spacecraft". Spaceflight Now. 23 June 2020. Archived from the original on 16 July 2020. Retrieved 23 July 2020. https://spaceflightnow.com/2020/06/23/nasa-agrees-to-fly-astronauts-on-reused-crew-dragon-spacecraft/
@jeff_foust (23 July 2020). "McErlean: NASA's plans call for reusing the Falcon 9 booster from the Crew-1 mission on the Crew-2 mission, and to reuse the Demo-2 capsule for Crew-2 as well" (Tweet) – via Twitter. https://x.com/jeff_foust/status/1286312153193029633
Foust, Jeff (19 November 2022). "SpaceX to launch last new cargo Dragon spacecraft". SpaceNews. Retrieved 18 February 2023. Walker revealed at the briefing SpaceX plans to build a fifth and likely final Crew Dragon. https://spacenews.com/spacex-to-launch-last-new-cargo-dragon-spacecraft/
Ralph, Eric (6 March 2019). "DeepSpace: SpaceX takes huge step towards Mars with flawless Crew Dragon performance". Teslarati. Archived from the original on 26 May 2020. Retrieved 26 May 2020. ...Crew Dragon does not need a significant number of systems critical for longer stays in space, as it is only designed to support humans for approximately one week in free-flight. https://www.teslarati.com/spacex-mars-flawless-crew-dragon-launch/
Wall 2018, "Crew Dragon is also outfitted with an emergency escape system, which consists of eight SuperDraco engines built into the capsule's walls. If something goes wrong at any point during a Crew Dragon flight, these engines can fire up and carry the spacecraft and its passengers to safety." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Seedhouse, Erik (2015). Cressy, Christine (ed.). SpaceX's Dragon: America's Next Generation Spacecraft. Daytona Beach, Florida: Springer. p. 132. doi:10.1007/978-3-319-21515-0. ISBN 978-3-319-21515-0. Retrieved 25 May 2020. The first test of the SuperDraco [...] was an impressive demonstration of what the engine could do, not only sustaining its 71,000 newtons (16,000 pounds) of thrust... 978-3-319-21515-0
Weitering, Hanneke (24 April 2019). "The Emergency Launch Abort Systems of SpaceX and Boeing Explained". Space.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. SpaceX has built the thrusters into the capsule's outer walls. Eight SuperDraco engines are embedded in the hull and will "push" the capsule away from the rocket in an emergency. [...] Boeing's CST-100 Starliner uses a similar launch escape system as the one on the Crew Dragon, but instead of eight SuperDraco engines, it uses four RS-88 engines, which are built by Aerojet Rocketdyne. https://www.space.com/launch-abort-systems-of-spacex-boeing.html
Leone, Dan (29 May 2014). "SpaceX's SuperDraco Thruster for Manned Dragon Spacecraft Passes Big Test (Video)". Space.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. Besides launch abort, SuperDraco thrusters will allow SpaceX's spacecraft to land propulsively on the ground, the company says. Propulsive Dragon landing tests are slated to begin at McGregor under the DragonFly program https://www.space.com/26045-spacex-superdraco-thruster-passes-test-video.html
Bergin, Chris (21 October 2015). "SpaceX DragonFly arrives at McGregor for testing". NASASpaceFlight.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. SpaceX's DragonFly test vehicle has arrived at its test facility in McGregor, Texas. DragonFly will be attached to a large crane, ahead of a series of test firings of its SuperDraco thrusters to set the stage towards the eventual goal of propulsive landings. https://www.nasaspaceflight.com/2015/10/spacex-dragonfly-arrives-mcgregor-testing/
Wall 2018, "It makes parachute-aided splashdowns in the ocean when its work on orbit is done. [...] SpaceX founder and CEO Elon Musk had previously stated that Crew Dragon would eventually be capable of touchdowns on terra firma, using parachutes and retrorocket firings [...] But that option is apparently no longer in the works." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Reichhardt 2018, "Landing Site: Atlantic Ocean" - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
Dreier, Casey (19 May 2020). "NASA's Commercial Crew Program is a Fantastic Deal". The Planetary Society. Archived from the original on 27 June 2020. Retrieved 27 June 2020. Crew Dragon $60 - $67 million; Starliner $91 - $99 million [...] Starliner and Crew Dragon per-seat costs use the total contract value for operations divided by the maximum 24 seats available. The upper range reflects the inclusion of NASA's program overhead. https://www.planetary.org/blogs/casey-dreier/2020/nasas-commercial-crew-is-a-great-deal-for-the-agency.html
McCarthy, Niall (4 June 2020). "Why SpaceX Is A Game Changer For NASA [Infographic]". Forbes. Archived from the original on 27 June 2020. Retrieved 27 June 2020. According to the NASA audit, the SpaceX Crew Dragon's per-seat cost works out at an estimated $55 million while a seat on Boeing's Starliner is approximately $90 million... https://www.forbes.com/sites/niallmccarthy/2020/06/04/why-spacex-is-a-game-changer-for-nasa-infographic/#4c5e22801656
McFall-Johnsen, Morgan; Mosher, Dave; Secon, Holly (26 January 2020). "SpaceX is set to launch astronauts on Wednesday. Here's how Elon Musk's company became NASA's best shot at resurrecting American spaceflight". Business Insider. Archived from the original on 27 June 2020. Retrieved 27 June 2020. Eventually, a round-trip seat on the Crew Dragon is expected to cost about $US55 million. A seat on Starliner will cost about $US90 million. That's according to a November 2019 report from the NASA Office of Inspector General. https://www.businessinsider.com/spacex-boeing-nasa-commercial-crew-program-launch-astronauts-2020-1
Wall, Mike (16 November 2019). "Here's How Much NASA Is Paying Per Seat on SpaceX's Crew Dragon & Boeing's Starliner". Space.com. Archived from the original on 27 June 2020. Retrieved 27 June 2020. NASA will likely pay about $90 million for each astronaut who flies aboard Boeing's CST-100 Starliner capsule on International Space Station (ISS) missions, the report estimated. The per-seat cost for SpaceX's Crew Dragon capsule, meanwhile, will be around $55 million, according to the OIG's calculations. https://www.space.com/spacex-boeing-commercial-crew-seat-prices.html
Foust, Jeff (1 September 2022). ""NASA and SpaceX finalize extension of commercial crew contract"". spacenews.com. Retrieved 1 October 2022. https://spacenews.com/nasa-and-spacex-finalize-extension-of-commercial-crew-contract/
Wall 2018, "("CST," by the way, stands for "crew space transportation.") Starliner also features sleek touch-screen displays and has about the same amount of internal volume as the SpaceX capsule." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Howell 2018, "The Starliner has a diameter of 15 feet (4.5 meters); a length of 16.5 feet (5 m), which includes the service module; and a volume of about 390 cubic feet (11 cubic md)." - Howell, Elizabeth (8 August 2018). "How Boeing's Commercial CST-100 Starliner Spacecraft Works". Space.com. Archived from the original on 26 May 2020. Retrieved 26 May 2020. https://www.space.com/41360-how-boeing-starliner-commercial-spacecraft-works.html
Reichhardt 2018, "Head / Leg Room: Diameter: 15 ft. Height: 16.6 ft. Dimensions include service (propulsion) module." - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
Szondy, David (4 April 2019). "First manned flight test of Boeing's Starliner to the ISS extended, but launch delayed". New Atlas. Archived from the original on 21 August 2019. Retrieved 21 August 2019. The Starliner is designed to be flown up to 10 times before it needs replacement [...] the new NASA Docking System (NDS) that will be used to dock with the ISS... https://newatlas.com/nasa-extends-boeing-first-manned-mission/59146/
Reichhardt 2018, "Reusable?: Yes Crew capsule can be reflown up to 10 times. Service module will be discarded after each flight." - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
Clark, Stephen (27 November 2015). "Aerojet Rocketdyne wins propulsion contracts worth nearly $1.4 billion". Spaceflight Now. Archived from the original on 8 June 2020. Retrieved 25 May 2020. Aerojet Rocketdyne, an aerospace propulsion contractor based in Sacramento, California, also announced this week it secured an expected contract from Boeing to provide thrusters, fuel tanks and abort engines for the CST-100 Starliner commercial crew capsule. [...] Each shipset includes four 40,000-pound thrust launch abort engines for the CST-100's pusher escape system and 24 orbital maneuvering and attitude control thrusters, each generating 1,500 pounds of thrust for low-altitude abort attitude control and in-space orbit adjustments. https://spaceflightnow.com/2015/11/27/aerojet-rocketdyne-wins-propulsion-contracts-worth-nearly-1-4-billion/
Gebhardt, Chris (19 December 2019). "Boeing, ULA launches Starliner, suffers orbital insertion issue – will return home Sunday". NASASpaceFlight.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. The Crew Module is equipped with 12 Reaction Control System (RCS) thrusters that can produce 100 lbf of thrust each. [...] The Service Module contains 28 RCS thrusters that produce 85 lbf thrust each and 20 Orbital Maneuvering and Attitude Control (OMAC) engines. The OMACs produce 1,500 lbf thrust each. [...] This suborbital trajectory was requested by Boeing so that under normal conditions, Starliner can then burn most of its unused launch abort fuel (via the Orbit Insertion Burn) to lighten its mass before it boosts its orbit to phase up to the Station. https://www.nasaspaceflight.com/2019/12/boeing-ula-momentous-starliner-uncrewed-test-flight/
Rhian, Jason (2 November 2016). "Launch Abort Engines for Boeing's CST-100 Starliner undergo testing". Spaceflight Insider. Archived from the original on 25 May 2020. Retrieved 25 May 2020. The OMAC thrusters are 1,500-pound (6,672-newton) thrust class and are used for low-altitude launch abort attitude control, maneuvering, and stage-separation functions [...] The spacecraft's RCS engines are 100-pound (445-newton) thrust class and provide high-altitude abort attitude control and on-orbit maneuvering. https://www.spaceflightinsider.com/organizations/boeing/launch-abort-engines-boeing-cst-100-starliner-undergo-testing/
Clark, Stephen (27 November 2015). "Aerojet Rocketdyne wins propulsion contracts worth nearly $1.4 billion". Spaceflight Now. Archived from the original on 8 June 2020. Retrieved 25 May 2020. Aerojet Rocketdyne, an aerospace propulsion contractor based in Sacramento, California, also announced this week it secured an expected contract from Boeing to provide thrusters, fuel tanks and abort engines for the CST-100 Starliner commercial crew capsule. [...] Each shipset includes four 40,000-pound thrust launch abort engines for the CST-100's pusher escape system and 24 orbital maneuvering and attitude control thrusters, each generating 1,500 pounds of thrust for low-altitude abort attitude control and in-space orbit adjustments. https://spaceflightnow.com/2015/11/27/aerojet-rocketdyne-wins-propulsion-contracts-worth-nearly-1-4-billion/
Gebhardt, Chris (19 December 2019). "Boeing, ULA launches Starliner, suffers orbital insertion issue – will return home Sunday". NASASpaceFlight.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. The Crew Module is equipped with 12 Reaction Control System (RCS) thrusters that can produce 100 lbf of thrust each. [...] The Service Module contains 28 RCS thrusters that produce 85 lbf thrust each and 20 Orbital Maneuvering and Attitude Control (OMAC) engines. The OMACs produce 1,500 lbf thrust each. [...] This suborbital trajectory was requested by Boeing so that under normal conditions, Starliner can then burn most of its unused launch abort fuel (via the Orbit Insertion Burn) to lighten its mass before it boosts its orbit to phase up to the Station. https://www.nasaspaceflight.com/2019/12/boeing-ula-momentous-starliner-uncrewed-test-flight/
Rhian, Jason (2 November 2016). "Launch Abort Engines for Boeing's CST-100 Starliner undergo testing". Spaceflight Insider. Archived from the original on 25 May 2020. Retrieved 25 May 2020. The OMAC thrusters are 1,500-pound (6,672-newton) thrust class and are used for low-altitude launch abort attitude control, maneuvering, and stage-separation functions [...] The spacecraft's RCS engines are 100-pound (445-newton) thrust class and provide high-altitude abort attitude control and on-orbit maneuvering. https://www.spaceflightinsider.com/organizations/boeing/launch-abort-engines-boeing-cst-100-starliner-undergo-testing/
Weitering, Hanneke (24 April 2019). "The Emergency Launch Abort Systems of SpaceX and Boeing Explained". Space.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. SpaceX has built the thrusters into the capsule's outer walls. Eight SuperDraco engines are embedded in the hull and will "push" the capsule away from the rocket in an emergency. [...] Boeing's CST-100 Starliner uses a similar launch escape system as the one on the Crew Dragon, but instead of eight SuperDraco engines, it uses four RS-88 engines, which are built by Aerojet Rocketdyne. https://www.space.com/launch-abort-systems-of-spacex-boeing.html
Clark, Stephen (27 November 2015). "Aerojet Rocketdyne wins propulsion contracts worth nearly $1.4 billion". Spaceflight Now. Archived from the original on 8 June 2020. Retrieved 25 May 2020. Aerojet Rocketdyne, an aerospace propulsion contractor based in Sacramento, California, also announced this week it secured an expected contract from Boeing to provide thrusters, fuel tanks and abort engines for the CST-100 Starliner commercial crew capsule. [...] Each shipset includes four 40,000-pound thrust launch abort engines for the CST-100's pusher escape system and 24 orbital maneuvering and attitude control thrusters, each generating 1,500 pounds of thrust for low-altitude abort attitude control and in-space orbit adjustments. https://spaceflightnow.com/2015/11/27/aerojet-rocketdyne-wins-propulsion-contracts-worth-nearly-1-4-billion/
The Boeing Company (December 2019). "Reporter's Starliner Notebook" (PDF). The Boeing Company. p. 5. Retrieved 25 May 2020. Service Module: [...] 4 Launch Abort Engines, 40,000 lbf each /wiki/Boeing
Gebhardt, Chris (19 December 2019). "Boeing, ULA launches Starliner, suffers orbital insertion issue – will return home Sunday". NASASpaceFlight.com. Archived from the original on 25 May 2020. Retrieved 25 May 2020. The Crew Module is equipped with 12 Reaction Control System (RCS) thrusters that can produce 100 lbf of thrust each. [...] The Service Module contains 28 RCS thrusters that produce 85 lbf thrust each and 20 Orbital Maneuvering and Attitude Control (OMAC) engines. The OMACs produce 1,500 lbf thrust each. [...] This suborbital trajectory was requested by Boeing so that under normal conditions, Starliner can then burn most of its unused launch abort fuel (via the Orbit Insertion Burn) to lighten its mass before it boosts its orbit to phase up to the Station. https://www.nasaspaceflight.com/2019/12/boeing-ula-momentous-starliner-uncrewed-test-flight/
Burghardt, Michael; Ingham, Jay; Lembeck, Michael F.; Reiley, Keith; Wood, Michael (1 May 2013). "Design Considerations for a Commercial Crew Transportation System" (PDF). The Boeing Company. p. 3. Archived from the original (PDF) on 1 May 2013. Retrieved 26 May 2020. The CST 100 can operate autonomously for up to 60 hours of free-flight [...] The vehicle can stay docked to a host complex for up to 210 days... https://web.archive.org/web/20130501135247/http://www.boeing.com/assets/pdf/defense-space/space/ccts/docs/Space_2011_Boeing.pdf
Wall 2018, "But Starliner touches down on land, not in the ocean, and therefore also sports impact-cushioning airbags at its rounded base." - Wall, Mike (3 August 2018). "Crew Dragon and Starliner: A Look at the Upcoming Astronaut Taxis". Space.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.space.com/41367-commercial-crew-spacecraft-starliner-dragon.html
Reichhardt 2018, "Landing Site: Western U.S. Starliner will parachute to dry land, like Soyuz, and use airbags to cushion the impact. Landing sites at White Sands, NM; Dugway Proving Ground, UT; Edwards AFB, CA; Willcox Playa, AZ." - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
Reichhardt 2018, "Landing Site: Western U.S. Starliner will parachute to dry land, like Soyuz, and use airbags to cushion the impact. Landing sites at White Sands, NM; Dugway Proving Ground, UT; Edwards AFB, CA; Willcox Playa, AZ." - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
Howell 2018, "If an emergency takes place, though, the spacecraft can splash down in the ocean, just like Apollo and Dragon." - Howell, Elizabeth (8 August 2018). "How Boeing's Commercial CST-100 Starliner Spacecraft Works". Space.com. Archived from the original on 26 May 2020. Retrieved 26 May 2020. https://www.space.com/41360-how-boeing-starliner-commercial-spacecraft-works.html
Dreier, Casey (19 May 2020). "NASA's Commercial Crew Program is a Fantastic Deal". The Planetary Society. Archived from the original on 27 June 2020. Retrieved 27 June 2020. Crew Dragon $60 - $67 million; Starliner $91 - $99 million [...] Starliner and Crew Dragon per-seat costs use the total contract value for operations divided by the maximum 24 seats available. The upper range reflects the inclusion of NASA's program overhead. https://www.planetary.org/blogs/casey-dreier/2020/nasas-commercial-crew-is-a-great-deal-for-the-agency.html
McCarthy, Niall (4 June 2020). "Why SpaceX Is A Game Changer For NASA [Infographic]". Forbes. Archived from the original on 27 June 2020. Retrieved 27 June 2020. According to the NASA audit, the SpaceX Crew Dragon's per-seat cost works out at an estimated $55 million while a seat on Boeing's Starliner is approximately $90 million... https://www.forbes.com/sites/niallmccarthy/2020/06/04/why-spacex-is-a-game-changer-for-nasa-infographic/#4c5e22801656
McFall-Johnsen, Morgan; Mosher, Dave; Secon, Holly (26 January 2020). "SpaceX is set to launch astronauts on Wednesday. Here's how Elon Musk's company became NASA's best shot at resurrecting American spaceflight". Business Insider. Archived from the original on 27 June 2020. Retrieved 27 June 2020. Eventually, a round-trip seat on the Crew Dragon is expected to cost about $US55 million. A seat on Starliner will cost about $US90 million. That's according to a November 2019 report from the NASA Office of Inspector General. https://www.businessinsider.com/spacex-boeing-nasa-commercial-crew-program-launch-astronauts-2020-1
Wall, Mike (16 November 2019). "Here's How Much NASA Is Paying Per Seat on SpaceX's Crew Dragon & Boeing's Starliner". Space.com. Archived from the original on 27 June 2020. Retrieved 27 June 2020. NASA will likely pay about $90 million for each astronaut who flies aboard Boeing's CST-100 Starliner capsule on International Space Station (ISS) missions, the report estimated. The per-seat cost for SpaceX's Crew Dragon capsule, meanwhile, will be around $55 million, according to the OIG's calculations. https://www.space.com/spacex-boeing-commercial-crew-seat-prices.html
Reichhardt 2018, "Each company has contracted for up to six additional taxi flights, during which the Starliner or Crew Dragon will dock with the station, remain attached for six months as a lifeboat for the crew, then return the astronauts to Earth." - Reichhardt, Tony (August 2018). "Astronauts, Your Ride's Here!". Air & Space/Smithsonian. Archived from the original on 21 August 2019. Retrieved 21 August 2019. https://www.airspacemag.com/space/space-series-starliner-and-spacex-dragon-180969499/
Harding, Pete (26 February 2017). "Commercial rotation plans firming up as US Segment crew to increase early". NASASpaceFlight.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. But with the new generation of US commercial crew vehicles, which can accommodate four astronauts, it will finally become possible to increase the station's crew size to its originally conceived number of seven, including four USOS crewmembers. [...] establishing the norm for all subsequent commercial crew vehicles, which will then continue to launch at a cadence of once every six months. https://www.nasaspaceflight.com/2017/02/commercial-rotation-us-segment-crew-increase-early/
Foust, Jeff (1 September 2022). ""NASA and SpaceX finalize extension of commercial crew contract"". spacenews.com. Retrieved 1 October 2022. https://spacenews.com/nasa-and-spacex-finalize-extension-of-commercial-crew-contract/
Northon, Karen (26 October 2020). "NASA, SpaceX Invite Media to Crew-1 Mission Update, Target New Date" (Press release). NASA. https://www.nasa.gov/press-release/nasa-spacex-invite-media-to-crew-1-mission-update-target-new-launch-date
Carter, Jamie (23 May 2020). "'Historic' NASA-SpaceX Rocket Launch Will Begin New Era In Human Spaceflight This Week". Forbes. Archived from the original on 25 May 2020. Retrieved 25 May 2020. ...Crew-1, that will see four astronauts—three astronauts from NASA (Mike Hopkins, Shannon Walker and Victor Glover) and one, Soichi Noguchi, from JAXA, the Japanese space agency—head from Florida to the ISS for a planned six-month expedition. Crew-1 will be SpaceX's first scheduled crew rotation mission. https://www.forbes.com/sites/jamiecartereurope/2020/05/23/spacex-and-nasa-will-open-a-new-era-in-human-spaceflight-this-week-in-the-year-everything-changed/#29df68417330
The Planetary Society staff (20 May 2020). "Your Guide to Crew Dragon's First Astronaut Flight". The Planetary Society. Archived from the original on 25 May 2020. Retrieved 25 May 2020. Not just NASA astronauts will fly aboard Crew Dragon—Japan's Soichi Noguchi will be 1 of 4 crewmembers on the very next flight scheduled for September 2020. https://www.planetary.org/blogs/crew-dragon-astro-flight.html
Gebhardt, Chris (29 May 2019). "NASA briefly updates status of Crew Dragon anomaly, SpaceX test schedule". NASASpaceFlight.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. Even with the anomaly that occurred last month, Ms. Lueders was able to update the NAC directly on the current hardware readiness dates for the In Flight Abort test and the Demo-2 crew mission, both of which now have to use different Crew Dragon capsules than originally planned. [...] Current capsule reassignments: [...] SN 207; Original Assignment Crew-2; New Assignment Crew-1 https://www.nasaspaceflight.com/2019/05/nasa-briefly-crew-dragon-anomaly-spacex-schedule/
Foust, Jeff (24 July 2020). "NASA safety panel has lingering doubts about Boeing Starliner quality control". SpaceNews. Archived from the original on 24 July 2020. Retrieved 24 July 2020. ...the first operational Crew Dragon mission, Crew-1. NASA said in a July 22 media advisory it anticipated a launch no earlier than late September. [...] NASA approved a contract modification in May that allows SpaceX to reuse boosters and capsule starting on the Crew-2 mission, which would launch in 2021. McErlean said NASA expects that the Crew-2 will use the Falcon 9 booster that launches Crew-1, and the capsule from the ongoing Demo-2 mission. /wiki/Jeff_Foust
Gebhardt, Chris (29 May 2019). "NASA briefly updates status of Crew Dragon anomaly, SpaceX test schedule". NASASpaceFlight.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. Even with the anomaly that occurred last month, Ms. Lueders was able to update the NAC directly on the current hardware readiness dates for the In Flight Abort test and the Demo-2 crew mission, both of which now have to use different Crew Dragon capsules than originally planned. [...] Current capsule reassignments: [...] SN 207; Original Assignment Crew-2; New Assignment Crew-1 https://www.nasaspaceflight.com/2019/05/nasa-briefly-crew-dragon-anomaly-spacex-schedule/
Gebhardt, Chris (20 June 2019). "Station mission planning reveals new target Commercial Crew launch dates". NASASpaceFlight.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. ...the two U.S. crew members who will be on that flight to the Station in May 2020 is completely dependent on whether Starliner or Dragon flies the mission. [...] Japan Aerospace Exploration Agency (JAXA) astronaut Soichi Noguchi will be on that first crew rotation mission regardless of which commercial partner flies it. https://www.nasaspaceflight.com/2019/06/station-planning-new-crew-launch-dates/
Harding, Pete (26 February 2017). "Commercial rotation plans firming up as US Segment crew to increase early". NASASpaceFlight.com. Archived from the original on 21 August 2019. Retrieved 21 August 2019. But with the new generation of US commercial crew vehicles, which can accommodate four astronauts, it will finally become possible to increase the station's crew size to its originally conceived number of seven, including four USOS crewmembers. [...] establishing the norm for all subsequent commercial crew vehicles, which will then continue to launch at a cadence of once every six months. https://www.nasaspaceflight.com/2017/02/commercial-rotation-us-segment-crew-increase-early/
Harwood, William (9 April 2020). "Soyuz crew docks with the International Space Station". Spaceflight Now. Archived from the original on 25 May 2020. Retrieved 25 May 2020. Strapped into the Soyuz MS-16/62S command module's center seat was veteran cosmonaut Anatoli Ivanishin, joined by rookie flight engineer Ivan Vagner on the left and Navy SEAL-turned-astronaut Chris Cassidy on the right. https://spaceflightnow.com/2020/04/09/soyuz-crew-docks-with-the-international-space-station/
Foust, Jeff (24 July 2020). "NASA safety panel has lingering doubts about Boeing Starliner quality control". SpaceNews. Archived from the original on 24 July 2020. Retrieved 24 July 2020. ...the first operational Crew Dragon mission, Crew-1. NASA said in a July 22 media advisory it anticipated a launch no earlier than late September. [...] NASA approved a contract modification in May that allows SpaceX to reuse boosters and capsule starting on the Crew-2 mission, which would launch in 2021. McErlean said NASA expects that the Crew-2 will use the Falcon 9 booster that launches Crew-1, and the capsule from the ongoing Demo-2 mission. /wiki/Jeff_Foust
Wall, Mike (18 June 2020). "NASA says SpaceX can reuse Crew Dragon capsules and rockets on astronaut missions: report". Space.com. Archived from the original on 30 June 2020. Retrieved 30 June 2020. The agency has approved the use of preflown Crew Dragon capsules and Falcon 9 rockets on SpaceX's crewed missions to the International Space Station (ISS) [...] The first flight with used hardware could be Crew-2, the second contracted mission, which will likely lift off sometime in 2021... https://www.space.com/spacex-reuse-crew-dragon-falcon-9-rockets.html
Potter, Sean (5 March 2021). "NASA, SpaceX Invite Media to Next Commercial Crew Launch". NASA. Retrieved 5 March 2021. This article incorporates text from this source, which is in the public domain. https://www.nasa.gov/press-release/nasa-spacex-invite-media-to-next-commercial-crew-launch
Potter, Sean (28 July 2020). "NASA Announces Astronauts to Fly on SpaceX Crew-2 Mission". NASA. https://www.nasa.gov/press-release/nasa-announces-astronauts-to-fly-on-spacex-crew-2-mission-to-space-station
Sempsrott, Danielle (19 October 2021). "NASA, SpaceX Adjust Next Crew Launch Date to Space Station". NASA. Retrieved 20 October 2021. https://blogs.nasa.gov/commercialcrew/2021/10/19/nasa-spacex-adjust-next-crew-launch-date-to-space-station
"NASA, ESA Choose Astronauts for SpaceX Crew-3 Mission to Space Station". NASA.gov. NASA. 14 December 2020. Retrieved 14 December 2020. https://www.nasa.gov/press-release/nasa-esa-choose-astronauts-for-spacex-crew-3-mission-to-space-station
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"NASA Assigns Astronauts to Agency's SpaceX Crew-4 Mission to Space Station". NASA.gov. NASA. 12 February 2021. Retrieved 12 February 2021. This article incorporates text from this source, which is in the public domain. https://www.nasa.gov/press-release/nasa-assigns-astronauts-to-agency-s-spacex-crew-4-mission-to-space-station
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"NASA Assigns Astronaut Jessica Watkins to NASA's SpaceX Crew-4 Mission". NASA. 16 November 2021. Retrieved 16 November 2021. https://www.nasa.gov/press-release/nasa-assigns-astronaut-jessica-watkins-to-nasa-s-spacex-crew-4-mission
"NASA Announces Astronaut Changes for Upcoming Commercial Crew Missions" (Press release). NASA. 6 October 2021. Retrieved 6 October 2021. This article incorporates text from this source, which is in the public domain. https://www.nasa.gov/press-release/nasa-announces-astronaut-changes-for-upcoming-commercial-crew-missions
@jaxa_wdc (12 October 2021). "JAXA has announced their WAKATA Koichi @Astro_Wakata is headed for the International Space Station aboard SpaceX's…" (Tweet) – via Twitter. https://x.com/jaxa_wdc/status/1447753014777810947
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@thesheetztweetz (3 December 2021). "NASA announces the agency intends to acquire "up to three additional crew flights to the International Space Station" from SpaceX, with the company halfway through its initial 6 flight contract and Boeing's Starliner capsule not yet operational, NASA says it may need to use the additional Crew Dragon flights "as early as 2023," effectively giving an additional buffer for any more Starliner delays" (Tweet) – via Twitter. https://x.com/thesheetztweetz/status/1466897394533076999
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Stich, Steve (24 August 2024). NASA's Boeing Crew Flight Test Status News Conference. NASA. Event occurs at 1:22:00. Retrieved 25 August 2024 – via YouTube. https://www.youtube.com/watch?v=AGOswKRSsHc
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Wattles, Jackie (24 August 2024). "Boeing Starliner's astronauts will return to Earth on Spacex Crew Dragon, NASA says". CNN. Retrieved 24 August 2024. https://www.cnn.com/2024/08/24/science/boeing-starliner-nasa-astronauts-spacex?cid=ios_app
Niles-Carnes, Elyna (15 October 2024). "NASA Updates 2025 Commercial Crew Plan". NASA. Retrieved 15 October 2024. The timing and configuration of Starliner's next flight will be determined once a better understanding of Boeing's path to system certification is established. This determination will include considerations for incorporating Crew Flight Test lessons learned, approvals of final certification products, and operational readiness. NASA is keeping options on the table for how best to achieve system certification. NASA will provide more information when available. https://blogs.nasa.gov/commercialcrew/2024/10/15/nasa-updates-2025-commercial-crew-plan/
Foust, Jeff (5 May 2024). "Russia may skip first operational Starliner mission". SpaceNews. Retrieved 20 August 2024. https://spacenews.com/russia-may-skip-first-operational-starliner-mission
Falcon 9 first-stage boosters have a four-digit serial number. A decimal point followed by a number indicates the flight count. For example, B1061.1 and B1061.2 represent the first and second flights of booster B1061.
A decimal point followed by a number indicates the flight count. For example, C207.1 and C207.2 represent the first and second flights of Dragon C207, Crew Dragon Resilience. /wiki/Crew_Dragon_Resilience
Sempsrott, Danielle (19 October 2021). "NASA, SpaceX Adjust Next Crew Launch Date to Space Station". NASA. Retrieved 20 October 2021. https://blogs.nasa.gov/commercialcrew/2021/10/19/nasa-spacex-adjust-next-crew-launch-date-to-space-station
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"Распоряжение Правительства Российской Федерации от 10.06.2022 № 1532-р ∙ Официальное опубликование правовых актов ∙ Официальный интернет-портал правовой информации". publication.pravo.gov.ru. Retrieved 11 June 2022. http://publication.pravo.gov.ru/Document/View/0001202206100047
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Wattles, Jackie; Pavlova, Uliana (15 July 2022). "SpaceX rockets to fly Russian cosmonauts with new NASA deal". CNN.com. CNN. Retrieved 16 July 2022. Andrei Fedyaev will fly on another SpaceX mission in the spring of 2023, according to NASA. https://www.cnn.com/2022/07/15/tech/spacex-russia-nasa-ride-share-agreement-scn/index.html
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