Airbus Defence and Space has been nominated for the 2026 World AI Awards in the Autonomous Orbital Systems category, recognising its work across satellite autonomy, orbital navigation, Earth observation and increasingly intelligent space systems.
Spacecraft have always needed automation. The difference now is how much more they may be expected to handle themselves. Satellites operate far from immediate human intervention, generate growing volumes of data and increasingly share crowded orbital environments with thousands of other objects.
For Airbus Defence and Space, that challenge stretches from helping spacecraft understand their surroundings to processing information faster and developing systems capable of operating with greater independence in orbit.
The World AI Awards recognises organisations, individuals, products and technologies contributing to the development and real-world application of artificial intelligence across industries.
Airbus brings considerable operational experience to the problem. The company says it has built and delivered more than 70 Earth observation satellite systems since 1986, accumulating close to 600 years of combined in-orbit experience. Around 30 additional satellites and numerous payloads are currently under development.
Teaching spacecraft to navigate around objects in orbit
One of Airbus Defence and Space’s most interesting orbital technology projects began with a problem that is becoming harder to ignore: space debris.
The RemoveDEBRIS mission tested technologies intended to help future spacecraft locate, approach and potentially remove unwanted objects from orbit.
Launched from the International Space Station in 2018, the spacecraft incorporated three Airbus technologies for active debris removal: a net, a harpoon and a Vision Based Navigation system.
The navigation experiment was particularly relevant to autonomous orbital operations. It was designed to develop rendezvous techniques by using cameras and processing technology to observe an object in space and determine information needed for navigation around it.
That capability matters because servicing, inspecting or removing objects in orbit cannot depend entirely on operators manually steering a spacecraft from Earth.
Autonomous rendezvous and navigation could eventually support a much wider range of missions, from satellite servicing to debris management.
Space debris turns autonomy into a practical problem
The orbital environment is getting busier, which makes understanding what is moving around a spacecraft increasingly important.
Airbus develops Space Situational Awareness technologies designed to determine the position and velocity of objects in orbit. Its systems include ground-based sensors such as the ART robotic telescope and the space-based SBOC optical camera for detecting and tracking debris.
The company also works on spacecraft disposal. Airbus says its approach includes safe deorbit manoeuvres, controlled or assisted re-entry and spacecraft designs intended to reduce fragmentation at the end of a satellite’s operational life.
These technologies do not all constitute artificial intelligence. They do, however, provide the sensing, navigation and orbital-awareness foundations upon which more autonomous spacecraft can be built.
That distinction matters. Autonomous orbital systems need reliable information about their environment before software can decide how a spacecraft should respond.
AI starts working on the information satellites send home
Autonomy in space is not limited to moving spacecraft.
A satellite can collect enormous quantities of information, but transmitting everything back to Earth before deciding what matters creates delays and consumes communications capacity.
Airbus Defence and Space is increasingly exploring AI as part of that data chain.
In February 2026, Airbus and ST Engineering signed agreements to explore next-generation satellite capabilities, including AI-enabled geospatial analytics. The collaboration covers advanced Synthetic Aperture Radar technology and digital systems designed to turn satellite information into more useful intelligence.
Airbus is already applying AI to satellite-derived intelligence on the ground. Its defence AI portfolio includes systems that analyse large volumes of imagery and other intelligence data. The company says its VISIO technology can identify military aircraft and vessels in satellite imagery, while STAM supports automated monitoring of sites over time.
These applications show where orbital autonomy could head next: spacecraft that do more than collect information and wait for instructions.
Hundreds of satellites raise the automation challenge
Scale creates another problem.
Airbus Defence and Space was awarded a contract in January 2026 to build another 340 OneWeb low Earth orbit satellites for Eutelsat. Combined with 100 spacecraft ordered previously, Eutelsat had ordered 440 satellites from Airbus across the two batches.
The existing OneWeb network already operates more than 600 satellites across 12 synchronised orbital planes approximately 1,200 kilometres above Earth, according to Airbus.
Airbus is also working with Thales Alenia Space on the first low-Earth-orbit layer of Europe’s IRIS² secure-connectivity constellation. That initial layer is planned to contain at least 66 satellites for delivery in 2029.
Managing constellations at this scale increases the importance of automation, efficient mission planning and resilient spacecraft operations.
The interesting part is no longer simply getting a satellite into orbit. It is making large networks of spacecraft manageable once they are there.
Artificial intelligence moves closer to the spacecraft itself
Airbus is now laying groundwork for AI that reaches further into aerospace systems.
In May 2026, the company announced a partnership with Mistral AI aimed at expanding artificial intelligence across commercial aircraft, helicopters, defence and space activities. Airbus said the collaboration would cover applications from internal design processes through to onboard capabilities, while addressing security and sovereignty requirements associated with sensitive aerospace systems.
That does not mean fully autonomous AI-controlled satellites are suddenly replacing conventional spacecraft operations.
It points instead to a gradual change.
Navigation technology can help spacecraft understand where they are. Space situational awareness can identify what surrounds them. AI can reduce the amount of data humans must manually analyse. More capable onboard computing can potentially move some decisions closer to where the information is generated.
Put those pieces together and the satellite starts becoming something different: less like a remotely operated sensor and more like a machine capable of interpreting parts of its environment for itself.
Graham Cooke, President of the World AI Awards, said:
“Airbus Defence and Space’s nomination in Autonomous Orbital Systems highlights an important direction for artificial intelligence and autonomy beyond Earth.
“As orbital environments become more complex, spacecraft will increasingly need technologies that help them navigate, understand their surroundings and process information efficiently. Airbus Defence and Space’s work across vision-based navigation, satellite intelligence and next-generation space systems shows the opportunity for greater autonomy to support safer and more capable orbital operations. We congratulate the team on its 2026 World AI Awards nomination.”
Airbus Defence and Space joins organisations, researchers, entrepreneurs and technology developers being recognised through the 2026 World AI Awards.
The programme recognises organisations, individuals and technologies contributing to the development and application of artificial intelligence across industries.
The Autonomous Orbital Systems category brings that conversation into an unusually demanding environment. Communications delays, limited power, orbital debris and the sheer scale of future satellite constellations all create reasons for spacecraft to become more capable of handling tasks without constant instructions from Earth.
Airbus Defence and Space already has pieces of that technology in operation or demonstrated through previous missions. Other capabilities remain research programmes, planned systems or areas of active development.
The direction is clear enough: satellites are becoming increasingly software-defined, data-rich and autonomous.
Learn more about Airbus Defence and Space and its space technologies at airbus.com.
Discover the World AI Awards 2026, explore the nominees and learn more about the awards at worldawards.ai.

