Defense & Military
GA-ASI and Tactical Air Support Validate CCA Open Architecture
GA-ASI and Tactical Air Support fused passive sensor data between a manned F-5 and unmanned CCA using USAF open architecture standards.

General Atomics Aeronautical Systems, Inc. (GA-ASI) and Tactical Air Support, Inc. successfully fused passive sensor data between a manned fighter and an unmanned test aircraft to track and engage airborne targets during a July 21, 2026, large force exercise.
In a press release issued on September 15, 2026, GA-ASI confirmed the flight test demonstrated Infrared Search and Track (IRST) Multi-Ship Ranging (MSR). The exercise proved that platforms built by different companies can share targeting data using government-standard open architectures, directly supporting U.S. Air Force (USAF) efforts to eliminate proprietary vendor lock in future autonomous fleets.
Validating open architecture for Collaborative Combat Aircraft
The July 21 Test-Flights paired a manned F-5 Advanced Tiger, operated by Tactical Air Support, with an unmanned Collaborative Combat Aircraft (CCA) test aircraft developed by GA-ASI. Both aircraft were equipped with GA-ASI’s TacACE® software, a Tactical Autonomy Ecosystem designed to comply with emerging military software standards.
The test directly applied the Agile Mission Suite Government Reference Architecture (AMS-GRA) and the Autonomy Government Reference Architecture (A-GRA). The Air Force Life Cycle Management Center (AFLCMC) publicly released these standards on July 28, 2026, to establish a modular, open-systems approach for acquiring and upgrading weapon systems. Throughout 2026, the USAF has actively validated the A-GRA standard across multiple vendor platforms to ensure mission Software can be decoupled from specific vehicle hardware.
By utilizing these government reference architectures, the GA-ASI and Tactical Air Support platforms successfully communicated and shared sensor data without relying on a single manufacturer’s proprietary network.
“With this flight, we moved beyond simply flying an autonomous jet and showed how a manned fighter and an autonomous CCA can work together to find, track, and engage a target using passive sensors and shared autonomy,” said Michael Roberts, Advanced Programs Emerging Technology Director at GA-ASI.
Passive sensing and Beyond Line of Sight integration
The exercise focused on closing the kill chain against airborne adversaries using passive sensors, which allow aircraft to detect and track targets without emitting Radar-Systems that could reveal their own positions. The IRST MSR capability enabled the manned F-5 and the unmanned CCA to triangulate target data collaboratively.
To achieve this, the aircraft utilized a Beyond Line of Sight (BLOS) data link, ensuring the platforms could maintain human-machine teaming and share high-fidelity targeting information over extended distances.
Roberts noted that the successful integration of these systems marks a critical step in the development of the CCA program. “This is the kind of operationally relevant mission that will allow autonomous CCAs to deploy alongside manned aircraft and deliver real combat capability for the warfighter,” Roberts said. He added that the flight test confirms the CCA solution’s readiness for production.
AirPro News analysis
The successful demonstration of IRST Multi-Ship Ranging between a manned F-5 and an unmanned CCA test aircraft highlights a pivotal shift in defense procurement and operational tactics. By proving that platforms from different Manufacturers can seamlessly fuse sensor data using the A-GRA and AMS-GRA standards, the industry is moving closer to the USAF’s vision of a highly modular, interchangeable autonomous fleet.
For decades, military aviation has been constrained by vendor lock, where purchasing a specific aircraft meant committing to that manufacturer’s proprietary software and communication links. The July 21 exercise demonstrates that decoupling the Automation software from the air vehicle hardware is not just a theoretical acquisition strategy, but a functional operational reality. As the USAF continues to refine its CCA requirements, the ability to integrate passive sensors across disparate platforms via government-owned architectures will likely become a baseline requirement for future defense contracts, fostering a more competitive and agile industrial base.
Photo Credit: General Atomics Aeronautical Systems, Inc.
Defense & Military
GA-ASI Opens Dayton Facility to Support FQ-42A Vengeance Program
GA-ASI will open a 22,000-sq-ft innovation hub near Wright-Patterson AFB in Spring 2027 to support USAF uncrewed aircraft programs.

General Atomics Aeronautical Systems, Inc. (GA-ASI) will establish a 22,000-square-foot innovation hub in Dayton, Ohio, expanding its local footprint sevenfold to support hardware and software development for United States Air Force (USAF) uncrewed programs.
Announced in a company press release on September 14, 2026, the Beavercreek facility is scheduled to open in Spring 2027. The expansion positions the manufacturers closer to key military acquisition and research centers at nearby Wright-Patterson Air Force Base (WPAFB), specifically the Air Force Life Cycle Management Center (AFLCMC) and the Air Force Research Laboratory (AFRL).
Prototyping and remote operations capabilities
The new facility will serve as a central hub for rapid prototyping, integration, and testing of next-generation Uncrewed Aircraft Systems (UAS). A key feature of the site will be a dedicated mission operations center, which will enable the remote flight control of GA-ASI aircraft directly from the Ohio location.
The project is expected to create 50 initial full-time jobs. The expansion builds upon GA-ASI’s existing presence outside WPAFB, which first opened in 2014.
Patrick Shortsleeve, Vice President of DoD Strategic Development at GA-ASI, stated that the expansion allows the company to bring its sensing and UAS expertise to a region known for advanced technology.
“This expansion will enable closer collaboration with local industry and more frequent interaction with our U.S. Air-Forces customer,” Shortsleeve said.
State and local economic partnerships
The development is a collaborative effort involving the State of Ohio, JobsOhio, the Dayton Development Coalition, and Synergy Building Systems. Ohio Governor Mike DeWine characterized the decision as a reflection of the state’s aviation heritage and workforce ingenuity.
J.P. Nauseef, President and CEO of JobsOhio, noted that the investment reinforces Ohio’s role in national defense infrastructure. Synergy Building Systems Vice President John Kopilchack also welcomed GA-ASI into the company’s defense portfolio, emphasizing a commitment to clients pioneering modern military solutions.
Aligning with the Collaborative Combat Aircraft program
The Dayton expansion follows a major production contracts awarded to GA-ASI by the USAF in June 2026 for the FQ-42A Collaborative Combat Aircraft (CCA). The uncrewed fighter jet is designed for semi-autonomous air-to-air operations alongside crewed aircraft.
According to reporting by Air & Space Forces Magazine, Air Force Secretary Troy Meink announced on September 14, 2026, that the FQ-42A has been officially named “Vengeance.” During the Air & Space Forces Association’s 2026 Air, Space & Cyber Conference, Meink outlined the service’s intention to field a minimum of 500 autonomous CCAs by 2032.
AirPro News analysis
We view GA-ASI’s physical expansion in Dayton as a direct operational response to the FQ-42A Vengeance production contract. By scaling its footprint directly outside the gates of WPAFB, the manufacturer is embedding its engineering and prototyping teams alongside the AFLCMC personnel responsible for managing the CCA program’s lifecycle. The inclusion of a mission operations center for remote flight control suggests GA-ASI intends to conduct active testing and demonstration flights integrated with AFRL research initiatives without requiring USAF personnel to travel to the company’s California or Nevada test sites.
Photo Credit: General Atomics Aeronautical Systems, Inc.
Defense & Military
G2E Consortium Wins GCAP ISANKE & ICS Development Contract
The G2E consortium secures an 18-month Edgewing contract to develop sensing and communications systems for the GCAP fighter.

The GCAP Electronics Evolution (G2E) consortium has secured an 18-month contract from the trinational joint venture Edgewing to develop the core sensing and communications architecture for the Global Combat Air Programme (GCAP) sixth-generation fighter.
Announced in a September 10, 2026, press release by Manufacturers S.p.A., the agreement funds the next development phase of the Integrated Sensing And Non-Kinetic Effects & Integrated Communications Systems (ISANKE & ICS). The system is designed to fuse high volumes of data across the aircraft’s sensors, providing pilots with a decisive information advantage in contested airspace when the fighter enters service, which is targeted for 2035.
Advancing the ISANKE & ICS Architecture
The 18-month contracts tasks the G2E consortium with maturing the electronics that will make the GCAP aircraft a sensor powerhouse. G2E comprises Leonardo S.p.A., Leonardo UK Ltd., ELT Group, Mitsubishi Electric Corporation, BAE Systems plc, and Japan Aircraft Industrial Enhancement Co. Ltd. (JAIEC).
Andrew Howard, Interim General Manager of the G2E Consortium, stated that the contract reflects the progress the group has made in transforming from separate national companies into a single international entity prepared to execute the next critical period of development.
“This is a significant milestone for the consortium, cementing GCAP Electronics Evolution as a strategic enabling partner within the GCAP enterprise,” Howard said.
The consortium teams are currently integrating with GCAP Agency and Edgewing partners at the programme headquarters in Reading, United Kingdom.
Broader GCAP Funding and Development Timeline
The G2E award follows a series of major funding milestones for the trinational effort between the United Kingdom, Italy, and Japan. In July 2026, the GCAP Agency awarded a £4.6 billion contract to Edgewing to advance the next stage of the aircraft’s design and engineering.
That July agreement built upon an initial £686 million contract placed with Edgewing in April 2026. Concurrently, the UK Government confirmed an £8.6 billion Investments in the GCAP programme over four years as part of its Defence Investment Plan, securing the financial foundation required to meet the aggressive 2035 service entry target.
AirPro News analysis
We view the rapid succession of contract awards between April and September 2026 as a strong indicator of programmatic momentum. The £4.6 billion Edgewing contract in July provided the overarching financial framework, allowing sub-tier entities like G2E to secure their specific development timelines. The emphasis on the ISANKE & ICS architecture highlights a shift in sixth-generation fighter design, where electronic warfare, data fusion, and non-kinetic effects are prioritized equally with traditional aerodynamic performance. By co-locating the G2E consortium with Edgewing and the GCAP Agency in Reading, the programme is actively attempting to mitigate the communication and integration bottlenecks that have historically challenged multinational defense projects.
Sources: Leonardo S.p.A.
Photo Credit: Leonardo S.p.A.
Defense & Military
Boeing Wins $552M Navy Contract for MQ-25A Stingray Production
The U.S. Navy awarded Boeing up to $552M to begin low-rate initial production of the MQ-25A Stingray unmanned tanker.

The Boeing Company has secured a contract modification valued at up to $552,053,000 from the U.S. Navy to begin low-rate initial production of the MQ-25A Stingray. The award transitions the world’s first fully integrated, carrier-based unmanned aerial vehicle from its development phase into active production.
Announced by the U.S. Department of Defense on September 14, 2026, the undefinitized, fixed-price-incentive modification covers the delivery of three Lot One aircraft and funds advance acquisition of long-lead components for three Lot Two airframes. The MQ-25A is designed to provide organic aerial refueling capabilities to Carrier Air Wings, a role that will free up manned F/A-18E/F Super Hornets for strike missions and extend their operational service life.
Production scope and timeline
The modification to a previously awarded firm-fixed-price advance acquisition contract obligates $164,428,480 at the time of award. This includes $100,000,000 in fiscal 2025 aircraft procurement funds and $64,428,480 in fiscal 2026 funds. Naval Air Systems Command (NAVAIR) is the contracting activity.
Work will be distributed across multiple North-American facilities. The majority of the Manufacturing will take place in St. Louis, Missouri, which accounts for 56 percent of the contract scope. Other significant locations include Torrance, California; Indianapolis, Indiana; and Quebec, Canada. The Department of Defense expects the work under this specific modification to conclude in July 2031.
Program milestones and development hurdles
The contract award follows a series of recent program milestones. On April 25, 2026, the Navy completed the first successful test flight of a production-representative MQ-25A. Less than a month later, Acting Secretary of the Navy Hung Cao granted Milestone C approval, officially authorizing the program to enter the Production and Deployment phase.
Capt. Daniel Fucito, the Unmanned Carrier Aviation Program Manager, highlighted the significance of the award in a Navy statement.
“Awarding this first LRIP contract marks a pivotal transition from development to operational reality and is a testament to the focused effort of our joint government and industry teams.”
The transition to production comes after the program navigated several development delays. According to the Pentagon’s April 2026 Modernized Selected Acquisition Report, technical risks and a labor strike at Boeing contributed to pushing the expected initial operational capability (IOC) to 2029. This represents a four-year delay from the program’s original timeline. Initial deliveries from the Lot One contract are also expected to begin in 2029.
The total program of record calls for 76 air vehicles. Seven test aircraft are currently in production at Boeing facilities in St. Louis and a dedicated MQ-25 site in Mascoutah, Illinois. Official sources show a slight discrepancy in the exact valuation of the new contract, with the Department of Defense listing a not-to-exceed value of $552,053,000 and a concurrent Navy release valuing the Lot One award at $562,000,000.
AirPro News analysis
Moving the MQ-25A into low-rate initial production is a critical milestone for both the U.S. Navy and Boeing. For the Navy, fielding an unmanned tanker capable of delivering 14,000 pounds of fuel over 500 nautical miles fundamentally alters carrier strike group geometry. It relieves the F/A-18E/F fleet from the heavy burden of buddy-tanking, preserving flight hours on tactical fighters for their primary combat roles.
For Boeing, locking in the LRIP contract provides stability to a defense program that has faced intense scrutiny over schedule slips. While the 2029 IOC target reflects the reality of recent supply chain and labor challenges, transitioning from test articles to production airframes indicates that the core technical risks are now manageable. We expect the focus will now shift heavily toward production scaling and the integration of the Stingray into the carrier air wing’s daily operational rhythm.
Sources: U.S. Department of Defense
Photo Credit: Boeing
-
Technology & Innovation4 days agoFAA Launches Texas eVTOL Flights Under Project Nexus eIPP
-
Defense & Military6 days agoSikorsky VH-92A Patriot Completes Marine One Fleet Replacement
-
Defense & Military23 hours agoBoeing Wins $552M Navy Contract for MQ-25A Stingray Production
-
Space & Satellites4 days agoFirefly Aerospace Signs Two Alpha Launches from Esrange Sweden
-
Space & Satellites5 days agoBoeing Delivers Final O3b mPOWER Satellites to SES
