General Atomics Aeronautical Systems, Inc

GA-ASI Demonstrates Potential of Artificially Intelligent Pilots for UAS Missions

The flights demonstrated the company’s commitment to maturing its Collaborative Combat Aircraft ecosystem for Autonomous Collaborative Platform UAS using artificial intelligence and machine learning By Caroline Rees / 13 Jan 2023
uas-missions-using-artificially-intelligent-pilots
Follow UST

General Atomics Aeronautical Systems, Inc. (GA-ASI) has further advanced its Collaborative Combat Aircraft (CCA) ecosystem by flying three unique missions with AI pilots on an operationally relevant Open Mission System (OMS) software stack. 

A company-owned Avenger UAS was paired with ‘digital twin’ aircraft to autonomously conduct Live, Virtual, and Constructive (LVC) multi-objective collaborative combat missions. 

The flights, which took place in December 2022 from GA-ASI’s Desert Horizons flight operations facility in El Mirage, Calif., demonstrated the company’s commitment to maturing its CCA ecosystem for Autonomous Collaborative Platform (ACP) UAS using AI and Machine Learning (ML). This provides a new and innovative tool for next-generation military platforms to make decisions under dynamic and uncertain real-world conditions.

The flight used GA-ASI’s novel Reinforcement Learning (RL) architecture built using agile software development methodology and industry-standard tools such as Docker and Kubernetes to develop and validate three deep learning RL algorithms in an operationally relevant environment. RL agents demonstrated single, multi, and hierarchical agent behaviors. The single agent RL model successfully navigated the live plane while dynamically avoiding threats to accomplish its mission. Multi-agent RL models flew a live and virtual Avenger to collaboratively chase a target while avoiding threats. The hierarchical RL agent used sensor information to select courses of action based on its understanding of the world state. This demonstrated the AI pilot’s ability to successfully process and act on live real-time information independently of a human operator to make mission-critical decisions at the speed of relevance.

For the missions, real-time updates were made to flight paths based on fused sensor tracks provided by virtual Advanced Framework for Simulation, Integration, and Modeling (AFSIM) models, and RL agent missions were dynamically selected by operators while the plane was airborne, demonstrating live, effective human-machine teaming for autonomy. 

This live operational data describing AI pilot performance will be fed into GA-ASI’s rapid retraining process for analysis and used to refine future agent performance.

“The concepts demonstrated by these flights set the standard for operationally relevant mission systems capabilities on CCA platforms,” said GA-ASI Senior Director of Advanced Programs Michael Atwood. “The combination of airborne high-performance computing, sensor fusion, human-machine teaming, and AI pilots making decisions at the speed of relevance shows how quickly GA-ASI’s capabilities are maturing as we move to operationalize autonomy for CCAs.”

The team used a government-furnished Collaborative Operations in Denied Environment (CODE) autonomy engine and the government-standard OMS messaging protocol to enable communication between the RL agents and the LVC system. Utilizing government standards such as OMS will make rapid integration of autonomy for CCAs possible.

In addition, GA-ASI used a General Dynamics Mission Systems’ EMC2 to run the autonomy architecture. EMC2 is an open architecture Multi-Function Processor with multi-level security infrastructure that is used to host the autonomy architecture, demonstrating the ability to bring high-performance computing resources to CCAs to perform quickly tailorable mission sets depending on the operational environment.

This is another in an ongoing series of autonomous flights performed using internal research and development funding to prove out important AI/ML concepts for UAS.

To learn more, visit the General Atomics Aeronautical Systems, Inc Partner Hub: Innovation Partner Hub
Posted by Caroline Rees Caroline co-founded Unmanned Systems Technology and has been at the forefront of the business ever since. With a Masters Degree in marketing Caroline has her finger on the pulse of all things unmanned and is committed to showcasing the very latest in unmanned technical innovation. Connect

More from General Atomics Aeronautical Systems, Inc

GA-ASI Engineers Honored with Prestigious AIAA San Diego Awards

General Atomics Aeronautical Systems engineers and teams earned prestigious AIAA San Diego awards recognizing achievements in uncrewed aviation, aerospace management, and technical leadership during 2025

Jun 04, 2026
GA-ASI Demonstrates Manned-Unmanned Teaming in Autonomy Exercise

General Atomics Aeronautical Systems has demonstrated manned-unmanned teaming capabilities during a joint autonomy exercise involving an MQ-20 Avenger® surrogate Collaborative Combat Aircraft and an F-35 fighter jet using beyond line of sight communications

May 29, 2026
GA-ASI & US Air Force Return YFQ-42A CCA to Flight Testing Following Software Updates

Following a brief strategic pause and successful software remediation, General Atomics Aeronautical Systems' YFQ-42A has resumed flight operations to continue its next-generation technology maturation and risk reduction mission

May 26, 2026
GA-ASI & Saab Complete Initial Flight of RPA Equipped With Early Warning Radar

GA-ASI and Saab have successfully conducted the first flight of the MQ-9B aircraft with LoyalEye pods, advancing next-generation airborne early warning capabilities

May 22, 2026
GA-ASI & USAF Successfully Test Laser-Guided Rockets for MQ-9A Reaper®

GA-ASI and the U.S. Air Force demonstrate new low-cost aerial intercept capabilities using laser-guided rockets on the MQ-9A Reaper®

May 13, 2026
GA-ASI Commends VMU-3 & Capt. Goar for Prestigious Marine Corps Aviation Awards

Marine Unmanned Aerial Vehicle Squadron 3 has been named the USMC’s UAV Squadron of the Year for exceptional operational effectiveness using the MQ-9A platform within the Marine Air-Ground Task Force program

Apr 28, 2026
Advancing Unmanned Systems Through Strategic Collaboration UST works with major OEMs to foster collaboration and increase engagement with SMEs, to accelerate innovation and drive unmanned systems capabilities forward.