Resilient
& Zero-Trust
A zero-trust architecture continuously verifies signal and system integrity, detecting and rejecting jamming, spoofing, and unauthorized access before they disrupt the mission.
Argentswarm
Autonomous drone swarms that operate reliably where GNSS and communications fail, are jammed, or spoofed — bringing true autonomy to real-world applications.
Argentswarm assumes signals can be compromised at any moment — and is engineered to complete the mission regardless.
A zero-trust architecture continuously verifies signal and system integrity, detecting and rejecting jamming, spoofing, and unauthorized access before they disrupt the mission.
Tasks are distributed across the swarm — enabling parallel operations, wider coverage, and real-time collaboration across multiple locations simultaneously.
Agile swarms reconfigure quickly with different robots and sensors, adapting fast to changing missions while sense-and-avoid keeps flight safe in shared airspace.
Onboard cameras with VIO and 3D LiDAR SLAM fuse into precise localization and mapping — stable flight in smoke, darkness, forest, urban and underground.
Mission commanders issue complex natural-language commands. Configurable autonomy spans human-in-the-loop confirmations to fully autonomous missions.
State-of-the-art models run directly on each vehicle — semantic scene understanding and decentralized decision-making for complex missions in unknown terrain.
Inspired by agile flocks of birds in nature, the distributed Argentswarm intelligence ensures optimal flight behavior, efficient tasks allocation, precise task execution, and safe interaction of the swarm with the surroundings, all while minimizing the need for operator intervention.
Argentswarm ensures secure, resilient communication across the entire swarm. Encrypted channels protect against hacking attempts, unauthorized control, and data exfiltration, safeguarding sensitive information collected during missions and preserving its integrity for subsequent use, including law enforcement investigations.
From disaster zones to industrial accidents — distributed sensing turns many robots into one capable system.
Coordinated swarms map and search vast areas without relying on satellite navigation and communication, using onboard perception and decision making.
Many robots cover separate sites simultaneously and fuse their data into a single operational picture.
Tight, fast-reconfiguring formations move unpredictably to stay resilient and hard to counter.
Autonomous drone patrols continuously monitor extended perimeters and respond to intruders.
Swarms build precise 3D maps and continuously updated digital twins of complex environments.
A network of spatially distributed sensors carried by swarm members detects and localizes hazardous materials while keeping operators at a safe distance.
Low-signature swarms provide reconnaissance and overwatch in support of time-critical special operations, both outdoors and indoors.
The swarm forms an ad-hoc mesh relay, extending secure communications into denied areas.
Team of coordinated robots inspect technology in large sites and flag anomalies in real time.
Autonomous exploration of confined, GNSS-denied environments such as tunnels and collapsed buildings. Thermal, acoustic, and LiDAR sensing enable rapid victim detection and triage.
Fly without signals. Operate without limits.
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