Fleet identity
Register each vehicle or drone with a persistent CPID, assurance level, sponsor, mission profile and lifecycle state.
Operate a governed management layer for autonomous ground vehicles and drones with persistent machine identity, mission lifecycle, GNSS position, telemetry, geofences, AI software state, predictive health and audit evidence.
The workspace model gives autonomous vehicles and drones their own fleet, missions and operating context while sharing Solarion’s identity, software assurance, evidence and operator-control architecture.
The workspace joins identity, mission authorization, software state and live observations into one reviewable operating picture.
Register each vehicle or drone with a persistent CPID, assurance level, sponsor, mission profile and lifecycle state.
Create, approve, activate, complete or abort missions with identity and operating-zone checks before state transitions.
Monitor latitude, longitude, altitude, speed, heading, fix accuracy, satellite count and freshness.
Configure approved circular operating zones and evaluate incoming position observations server-side.
Review battery, thermal state, AI latency, network RTT, signal strength, link state, anomaly rate and autonomy mode.
Control AI package/deployment state per workspace and preserve hash-linked audit evidence for management actions.
Solarion manages authorization, state, evidence and operational context. Onboard autonomy and certified/OEM safety systems remain authoritative for physical motion.
The installed Control Core provisions representative autonomous assets and missions so teams can exercise the full workflow before connecting production adapters.
Closed-site logistics asset with CPID identity, approved yard geofence, GNSS position, odometer context and governed AI packages.
Infrastructure inspection UAS with altitude, vertical speed, satellite count, signal quality and mission-linked telemetry.
Survey and mapping asset seeded with a degraded operating condition to exercise exception handling and operator review.
The GPS Operations module can switch from the full fleet picture into a selected route simulation. Each playback step writes a fresh simulated GNSS/GPS observation, recalculates geofence posture and updates the map marker in real time.
Receiving-to-staging closed-site route with speed, heading, odometer and operating-zone evidence.
Perimeter inspection circuit with changing altitude, GNSS satellite count, link state and mission-linked telemetry.
Grid survey route intentionally paired with degraded link telemetry so operators can exercise exception review.
This architecture is designed to govern identity, software, missions, observations and evidence. It does not expose steering, braking, takeoff, landing, actuator, collision-avoidance, emergency-stop or safety-bypass commands.
Switch between Robotics Operations and Autonomous Vehicles & Drones from one portal. Administrators can add additional workspaces as the fleet architecture expands.