Defence · Tools

ALX-OS

The sovereign operating system for secure autonomous drones

A sovereign drone operating system enabling secure command and control, autonomous swarming, embedded AI for detection and tracking, fully pilot‑free mission execution, and resilient navigation even without GPS

ALX-OS

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Our operating system is a fully sovereign, mission‑grade software stack designed to control, coordinate, and automate advanced unmanned aerial systems. At its core, it provides secure command and control, ensuring that every link between operator, drone, and payload is protected through hardened communication channels, encrypted telemetry, and resilient anti‑interference protocols. This foundation enables safe operation in contested environments where electronic warfare, jamming, or spoofing are present.

Built for modern defence requirements, the system natively supports swarm operations, allowing multiple drones to collaborate, share situational awareness, and execute coordinated maneuvers. Swarm logic is embedded directly into the OS, enabling distributed decision‑making, dynamic role assignment, and autonomous reconfiguration when units are lost or communication is degraded.

The operating system integrates embedded artificial intelligence for real‑time detection, classification, and tracking of targets or points of interest. This onboard AI reduces operator workload, increases mission reliability, and enables autonomous engagement workflows. It processes sensor data locally, ensuring low latency and independence from external compute infrastructure.

A key capability is fully pilot‑free mission execution. The OS can plan, navigate, and complete complex missions autonomously — from launch to recovery or terminal action — without human intervention. Mission logic includes route planning, obstacle avoidance, threat response, and dynamic replanning based on real‑time conditions.

To ensure operational continuity in denied environments, the system features GPS‑independent navigation, combining inertial sensing, visual odometry, terrain correlation, and other alternative positioning methods. This allows drones to operate reliably even when GNSS signals are jammed, spoofed, or unavailable.

Together, these capabilities form a robust, sovereign operating system that enables secure, intelligent, and autonomous drone operations across the full spectrum of modern missions.