Compute
Provide portable computing close to sensors, systems, and decisions.
Swarm Index · Intelligence
Portable and scalable computing, communication, and information architectures for autonomous and swarm systems.
Operational objective
Swarm Spatial connects resilient computing, intelligent communication, signal processing, and autonomous control so distributed systems can act under constrained connectivity.
Provide portable computing close to sensors, systems, and decisions.
Exchange information across autonomous and swarm systems.
Coordinate distributed units as a resilient system.
System architectures
The lead technology gives this field a clear centre of gravity. Supporting architectures connect the functions relevant to its operational objective.
Featured technology
Intelligent communication architecture
Analog Geometric-Glyph Intelligence Communication: an intelligent communication architecture for autonomous and swarm systems in exo-environments.
Architecture profile
EXE-MTS family
The modular structural architecture forms a shared foundation. Its configurations extend it for the requirements of this operational field.
Robotic habitat
A transformable robotic habitat based on the EXE-MTS architecture for deployment and sustained operation in extreme and exo-environments.
Further building blocks contributing to the operational objective.
Resilient computing architecture
Self-Programmable Operating Resilient Environment: a self-programmable computing architecture for autonomous and swarm systems.
Engineering and scientific foundation
These capabilities work as an integrated architecture connecting physical systems, control, energy, communication, and computing.
Models, optimisation, and mathematical foundations for coupled physical and intelligent systems.
Portable, distributed, and scalable computing and communication architectures.
Perception, state estimation, and control of dynamic systems under demanding conditions.
Measurement systems and real-time interpretation of environmental, structural, and system states.
Electronic interfaces, power conversion, and robust hardware for integrated systems.
System architectures for controlled behaviour under faults, failures, and limited access.
Distributed decision and coordination architectures for cooperating systems.
Connected fields