Telemetry Acquisition
Passive LiDAR and perimeter FLIR (Forward-Looking Infrared) mesh detects abnormal thermal disruption 2.4 kilometers beyond the designated geofence. Raw telemetry is pushed via P5G to the edge-server array.
Stracas engineers autonomous, closed-loop threat mitigation systems for critical sovereign infrastructure. We fuse multi-modal sensor telemetry with Spatio-Temporal Graph Neural Networks (ST-GNN) to neutralize physical sabotage before it breaches the perimeter.
Request Implementation SpecsThe Stracas engine is structurally embedded to secure heavy industrial capital across some of the most complex geopolitical transit routes globally.
Autonomous threat tracking and rail telemetry monitoring across an 800km heavy-haul transit route. Securing critical mineral (Tungsten/Copper) extraction and transport.
Perimeter hardening for localized grid edge-nodes and LNG transit manifolds. Deploying hardware-agnostic sensor fusion to detect physical tampering.
Passive LiDAR and perimeter FLIR (Forward-Looking Infrared) mesh detects abnormal thermal disruption 2.4 kilometers beyond the designated geofence. Raw telemetry is pushed via P5G to the edge-server array.
Edge-compute ST-GNN models the data point. Biological false-positives (wildlife) are algorithmically filtered out. Target is mathematically classified as an unregistered vehicular convoy. Movement trajectory is predicted.
System generates optimal intercept coordinates. Autonomous command routed to localized COTS drone hive. Unmanned Aerial Systems (UAS) deploy and acquire visual lock on the target within seconds.
Target illuminated by UAS optics. Perimeter deterrent systems (acoustic arrays, floodlights) are armed. System halts autonomous escalation and prompts cleared SOC personnel for final intervention authorization. Perimeter integrity maintained.
Legacy security systems rely on public macro-networks, introducing critical latency and exposing data to signal jamming.
Stracas operates strictly at the edge. By natively integrating with Ghostnet (our proprietary Private 5G O-RAN architecture), the system executes Ultra-Reliable Low-Latency Communication (URLLC). This allows drone swarms and physical countermeasures to be processed on-site, entirely air-gapped from vulnerable internet infrastructure.