Capabilities for the contested fight
PERSEUS was built against the demands of degraded, contested, multidomain operations. Below is how its implemented capabilities map directly to the NATO DIANA 2027 Multidomain Autonomy challenge, requirement by requirement.
Resilient autonomy
A contested-autonomy doctrine package plus degraded-state runtime that keeps reasoning when the operating picture deteriorates.
GNSS-denied reasoning
Navigation-trust state is a first-class input. Explicit spoofing-suspicion shapes how cautious the advice becomes.
Comms-degraded behaviour
A four-value comms-loss policy governs bounded behaviour when the link is intermittent or lost, by doctrine, not improvisation.
Capability mapped to requirement.
Each row is a DIANA multidomain-autonomy topic and the implemented PERSEUS contribution that addresses it.
Mission profiles.
PERSEUS encodes doctrine as structured, testable packages. Today’s library spans the profiles below, and the pilot phase expands it to further NATO mission sets.
CASEVAC corridor
Casualty-evacuation routing and phase-transition reasoning, validated through a dedicated regression workflow and degraded-state checks.
Reconnaissance
Exposure-aware and blind-sector-aware movement advice that weighs observation value against detectability.
Contested autonomy
Degraded GNSS / comms / spoofing-suspicion reasoning mapped to the DIANA contested-port and logistics-node scenarios.
What PERSEUS does, and does not, claim.
Precision about scope is a feature, not a hedge. Reviewers can trust the claims because we are explicit about the boundaries.
- Proven today: mature implemented core, contract- and runtime-level DIANA demos, cross-validated JAUS conformance, replay determinism.
- Pilot phase: live host-UGV integration, field validation under degraded GNSS/comms, formal conformance and certification.
PERSEUS is not:
- a proprietary sensor kit
- a complete self-driving vehicle stack
- a low-level motor / actuator controller
- a weapons, effector or fire-control system
- a swarm command authority, it is a peer, not a controller
- NATO-certified, it is standards-aligned
From proof of concept to host UGV.
The integration roadmap is a documented, staged plan, exactly what the DIANA accelerator and pilot funding are asked to support.
Implemented core, validated on the bench
Eyes + Brain runtime, DIANA contract / runtime / host-emulator demos passing, evidence packs regenerating byte-for-byte.
Onto a representative host UGV
Integration via the documented adapter boundary, then execution of the staged live test plan on a real platform.
Field validation under degraded conditions
Live trials under degraded GNSS/comms, multi-platform cooperative-observation testing on a real peer network.
Doctrine expansion & formal conformance
Additional NATO mission profiles and formal standards conformance through an external assessment process.
Request the reviewer evidence pack.
We provide evaluators with the technical brief, demo script, and a byte-verifiable evidence package on request.