Space & Satellites
NASA Names SpaceX Crew-14 Astronauts for Spring 2027 ISS Mission
NASA assigned four crew members from NASA, JAXA, and Roscosmos to SpaceX Crew-14, targeting a spring 2027 ISS launch.

NASA has assigned four crew members from three international space agencies to the SpaceX Crew-14 mission, targeting a launch to the International Space Station no earlier than spring 2027.
The flight marks the 14th commercial crew rotation mission conducted by SpaceX under NASA’s Low Earth Orbit Program. According to a press release issued by the agency on September 24, 2026, the crew will join Expedition 75/76 to conduct scientific research and technology demonstrations intended to support future lunar and Martian exploration.
Crew-14 roster and international composition
The Crew-14 manifest includes astronauts from NASA, the Japan Aerospace Exploration Agency (JAXA), and Roscosmos. NASA astronaut Kayla Barron will serve as spacecraft commander, with fellow NASA astronaut Chris Birch assigned as pilot. JAXA astronaut Makoto Suwa and Roscosmos cosmonaut Arutyun Kiviryan will serve as mission specialists.
Barron brings previous spaceflight experience to the command role, having logged 177 days in space and completed two spacewalks during Expeditions 66 and 67 following her launch on the SpaceX Crew-3 mission in 2021. The remaining three crew members will be making their first spaceflights. Kiviryan was selected for the Cosmonaut Corps in 2021 and began serving as a test cosmonaut in 2023. Suwa was selected as a JAXA astronaut candidate in 2023 and completed his basic certification training in 2024.
Commercial crew rotation timeline
The Crew-14 mission will utilize a SpaceX Crew Dragon spacecraft launched atop a Falcon 9 rocket from the United States. Upon docking with the International Space Station (ISS), the four crew members will transition into their roles for the long-duration Expedition 75/76.
NASA’s scheduling of the spring 2027 launch follows the progression of the agency’s commercial crew rotation sequence. The preceding mission, SpaceX Crew-13, is currently undergoing final prelaunch preparations and is targeted for an October 1, 2026, departure to the orbital laboratory.
AirPro News analysis
The inclusion of both JAXA and Roscosmos crew members on a single US commercial vehicle highlights the continued reliance on integrated international crews for ISS operations. The cross-training and seat-exchange agreements between NASA and Roscosmos remain a functional necessity for maintaining continuous staffing and operational redundancy on the space station. We view the assignment of a highly experienced commander like Barron alongside three rookie flyers as a standard crew resource management strategy for long-duration orbital expeditions.
Sources: NASA Press Release
Photo Credit: NASA
Space & Satellites
Firefly Aerospace Expands Cleanroom Capacity in Cedar Park Texas
Firefly Aerospace quadruples spacecraft production capacity with a new ISO Class 8 cleanroom in Cedar Park, Texas.

Firefly Aerospace has quadrupled its spacecraft production capacity with the completion of a new ISO Class 8 cleanroom at its Cedar Park, Texas, facility, enabling the simultaneous assembly of up to 12 lunar and orbital vehicles.
Announced in a company press release on September 22, 2026, the infrastructure expansion was funded in part by a grant from the Texas Space Commission (TSC). The upgraded manufacturing space is designed to support Firefly’s growing manifest, which currently includes five upcoming lunar missions and two contracts with the Defense Innovation Unit (DIU).
Scaling production for lunar and orbital missions
The new cleanroom significantly expands the manufacturing footprint at Firefly’s 144,000-square-foot campus. By operating two cleanrooms concurrently, the company can now assemble up to a dozen spacecraft at once. This capacity is critical for the parallel production of the Blue Ghost lunar lander and the Elytra orbital vehicle.
“This new cleanroom represents a major step forward in making the Moon more accessible with reliable, high-cadence spacecraft for our government and commercial customers,” said Ramon Sanchez, Chief Operating Officer at Firefly Aerospace.
The facility’s construction was supported by the TSC, a state regulatory and funding body created by the Texas Legislature. Norman Garza, Jr., Executive Director of the commission, noted that the project aligns with the state’s vision for aerospace innovation and congratulated the company on the successful completion of the expanded ISO 8 cleanroom.
Defense contracts and flight-proven hardware
Beyond lunar exploration, the expanded floor space will accelerate work on Firefly’s Elytra orbital vehicles. The company currently holds two contracts with the DIU for space domain awareness and deorbit services.
The Elytra vehicle utilizes propulsion systems that were flight-proven during Firefly’s Blue Ghost Mission 1. That initial mission successfully landed on the lunar surface near Mons Latreille on March 2, 2025. Firefly is currently working to scale these proven technologies into a larger lander designed to deliver heavier lunar cargo, terrain vehicles, infrastructure, and power systems to the Moon.
AirPro News analysis
We view Firefly’s infrastructure expansion as a necessary transition from a development-phase aerospace startup to a sustained production manufacturer. Following the successful lunar landing of Blue Ghost Mission 1 in 2025, the company faces the operational challenge of delivering on a backlog of five additional lunar missions while simultaneously servicing Department of Defense contracts.
The financial backing of the Texas Space Commission highlights a growing trend of state-level investments competing to anchor aerospace manufacturing hubs. By quadrupling its cleanroom capacity, Firefly is positioning itself to meet the high-cadence delivery requirements demanded by both NASA’s Commercial Lunar Payload Services program and the Defense Innovation Unit’s rapid acquisition models.
Sources: Firefly Aerospace
Photo Credit: Firefly Aerospace
Space & Satellites
Space Force Selects Northrop Grumman and True Anomaly for GHOST-R
The U.S. Space Force picks Northrop Grumman and True Anomaly to develop GHOST-R prototype reconnaissance satellites for GEO by 2028.

The U.S. Space Force has selected Northrop Grumman and True Anomaly to develop prototype spacecraft for the Geosynchronous High-Resolution Optical Space-Based Tactical Reconnaissance (GHOST-R) program, aiming to deploy a new generation of space-to-space imaging satellites by 2028.
Announced in a September 18, 2026, press release by Northrop Grumman, the contract tasks the companies with delivering operational prototypes within 24 months. The GHOST-R initiative, managed jointly by the Defense Innovation Unit (DIU) and Space Systems Command (SSC), represents a strategic shift toward proliferated, commercial-derived satellite architectures to monitor increasingly congested geosynchronous orbits (GEO).
Accelerating space domain awareness
The GHOST-R project falls under the DIU “Kill Web” portfolio, which focuses on integrating AI into space architectures to improve how U.S. forces sense and target potential adversaries. The primary objective of the GHOST-R spacecraft is to provide high-resolution imagery of objects in GEO, enhancing the military’s battle damage assessment and positive identification capabilities.
Northrop Grumman will base its prototype on the company’s ESPASat-L spacecraft platform. The manufacturer is operating on an accelerated 24-month timeline to assemble, test, and deliver the vehicle to the Space Force.
“Space is becoming more congested and contested every day, and our joint forces depend on clear, timely insight into what’s happening on orbit. By rapidly fielding this prototype, we’re pushing innovation to new heights to strengthen the nation’s ability to detect, understand and anticipate activity in geosynchronous orbit so we can better protect critical space assets and keep the joint force operating with confidence.”
The quote above was provided by Ryan Tintner, Vice President and General Manager for Space Superiority at Northrop Grumman, in the company’s official announcement.
Transitioning from exquisite to proliferated architectures
The U.S. military currently relies on the Geosynchronous Space Situational Awareness Program (GSSAP) to monitor GEO. GSSAP consists of a small fleet of classified, highly capable, and expensive satellites built by Northrop Grumman. The Space Force is now seeking to augment this legacy system with a proliferated layer of lower-cost, maneuverable satellites that can be fielded in larger numbers and shared more easily with allied nations.
True Anomaly brings a commercial space approach to the GHOST-R program. The company recently demonstrated its maneuverable Jackal spacecraft as part of the Space Force’s Victus Haze responsive space mission, highlighting a growing Department of Defense emphasis on rapid, agile space assets.
According to reporting by DefenseScoop, True Anomaly CEO and Co-founder Even Rogers emphasized the necessity of this architectural shift. Rogers stated that reconnaissance in GEO is critical to protecting allied systems, noting that as adversary platforms become more capable, the U.S. reconnaissance architecture can no longer rely on a handful of exquisite assets.
The path to the RG-XX operational fleet
The GHOST-R prototypes serve as a critical pathfinder for a broader Space Force initiative known as RG-XX, a planned proliferated in-space reconnaissance layer. In April 2026, the Space Force selected 14 companies to form the Andromeda consortium, which will compete for task orders worth up to $6.2 billion for the RG-XX program.
If the GHOST-R demonstrations scheduled for 2028 prove successful, the operational RG-XX fleet could begin fielding as early as 2029. The prototype phase is designed to validate the technology and operational concepts before committing to the multi-billion-dollar production run.
Col. Bryon McClain, Acting Portfolio Acquisition Executive for Space Combat Power, told Payload Space that the rapid prototyping approach burns down technical risk and drives down lifecycle costs. McClain confirmed that successful prototypes will have a direct transition into the program of record, getting vital capabilities to operators faster.
AirPro News analysis
We note that the dual selection of a traditional prime contractor in Northrop Grumman and a venture-backed entrant in True Anomaly highlights the Space Force’s evolving acquisition strategy. By pairing an established manufacturer of exquisite systems with a commercial startup focused on rapid iteration, the Department of Defense is hedging its bets to ensure the 2029 RG-XX fielding target remains viable. The strict 24-month delivery cycle for the GHOST-R prototypes underscores an urgency driven by increasingly contested orbital environments, signaling that schedule and maneuverability are now prioritized alongside traditional sensor performance.
Sources: Northrop Grumman
Photo Credit: Northrop Grumman
Space & Satellites
NASA SpaceX Crew-13 Launch Rescheduled for October 1 2026
NASA and SpaceX target October 1, 2026 for Crew-13 ISS launch after resolving a Dragon propulsion valve leak.

The National Aeronautics and Space Administration (NASA) and Space Exploration Technologies Corp. (SpaceX) are targeting October 1, 2026, for the launch of the Crew-13 mission to the International Space Station (ISS), following the successful replacement of a faulty propulsion valve on the Dragon spacecraft.
In a statement published on September 22, 2026, NASA confirmed that the earliest launch opportunity is scheduled for 11:10 a.m. EDT from Space Launch Complex 40 (SLC-40) at Cape Canaveral Space Force Station in Florida. The flight marks the 13th operational crew rotation mission flown by SpaceX under the agency’s Commercial Crew Program.
Overcoming Prelaunch Technical Delays
The mission was originally slated to launch no earlier than September 12, 2026. During standard prelaunch processing in late August, engineering teams detected an oxidizer leak within the Dragon spacecraft’s propulsion system. This discovery prompted a delay to allow for troubleshooting and hardware repairs.
On September 16, 2026, NASA announced that the technical issue had been resolved by engineering teams on the ground.
The team successfully replaced an oxidizer valve in Dragon’s propulsion system after a leak was detected earlier in processing.
With the hardware repaired, the spacecraft is currently undergoing final prelaunch testing and readiness reviews to ensure all systems meet flight safety standards.
Crew-13 Roster and Mission Objectives
The four-member Crew-13 roster includes NASA astronauts Jessica Watkins, serving as spacecraft commander, and Luke Delaney as pilot. They are joined by mission specialists Joshua Kutryk of the Canadian Space Agency (CSA) and Sergey Teteryatnikov of the State Space Corporation ROSCOSMOS (Roscosmos).
To ensure their health and prevent the introduction of illnesses to the orbital laboratory, the crew officially entered routine prelaunch quarantine on September 17, 2026, at NASA’s Johnson Space Center in Houston, Texas. Upon arrival at the ISS, the four spacefarers will integrate into Expedition 75. Their scheduled microgravity research includes studies focusing on stem cell growth, fluid shifts in the human body, and plant habitats.
AirPro News analysis
We note that the swift identification and resolution of the oxidizer valve leak highlights the maturity of the Commercial Crew Program’s safety protocols. As SpaceX prepares for its 13th operational crew rotation, the ability to detect propulsion anomalies during routine processing rather than closer to the terminal countdown demonstrates the rigorous oversight maintained by both the manufacturer and the regulator. The shift to an October 1 launch date ensures the continuous human presence aboard the ISS remains uninterrupted while prioritizing vehicle integrity.
Sources: NASA
Photo Credit: NASA
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