
Counter-UAS Command & Control (C2) Systems are centralized software and hardware platforms designed to integrate, manage and coordinate multiple drone-detection sensors through a unified operational interface. By collecting and correlating information from RF detectors, radar, EO/IR tracking systems and other airspace-monitoring equipment, the platform provides operators with a comprehensive real-time view of low-altitude airspace activity.
Advanced sensor-fusion and data-correlation functions combine target information from multiple sources into a single operational track. The system can display target position, altitude, speed, direction, trajectory, classification and alert status on a digital map, helping operators evaluate potential risks and maintain continuous situational awareness.
Configurable protected zones, restricted areas and alarm rules enable automatic alerts when unidentified or unauthorized aerial objects approach or enter designated airspace. The platform can also cue EO/IR sensors toward detected targets for visual verification, manage incident records and support coordinated response procedures according to approved operational protocols.
Typical capabilities include:
- Centralized multi-sensor management
- Integration of RF, radar and EO/IR systems
- Real-time sensor fusion and data correlation
- Unified target detection and track management
- Digital map and airspace visualization
- Target identification and classification
- Automatic EO/IR cueing and visual verification
- Configurable warning zones and alarm rules
- Threat assessment and alert prioritization
- Multi-target tracking and incident management
- Real-time video and sensor-data display
- Event recording, playback and report generation
- Role-based user and permission management
- Multi-site networking and centralized supervision
- Integration with existing security and command platforms
Counter-UAS C2 solutions can be customized according to sensor configuration, protected-area size, operational workflow, communication architecture and existing security infrastructure. They are suitable for airports, borders, ports, critical infrastructure, industrial facilities, government sites, correctional facilities, major events and other sensitive locations requiring unified airspace monitoring and coordinated situational awareness.

