GROUND-BASED PERCEPTION SYSTEMS

We specialize in advanced ground-based perception systems designed to master the complexities of the low altitude environment. By integrating a wide array of sensors, from radars to visual cameras, we provide precise identification and tracking of airborne and ground targets, including commercial drones.

Our expertise lies in sophisticated multi-sensor fusion, where our algorithms seamlessly merge raw measurements or individual tracks to deliver a high-fidelity operational picture of the monitored environment while keeping an eye on the computational cost. Designed for scalability, our solutions power distributed sensor networks to maximize coverage and accuracy across wide sectors.

Our advanced radar-based sensing strategies are tailor-made for airport environments, enhancing safety and efficiency for both ground operations and perimeter surveillance.

From securing airport perimeters and ground operations to enabling the future of U-Space and Urban Air Mobility (UAM), we provide the data layer needed for a safer, smarter sky.

Whether securing infrastructure or providing the data layer for advanced flight services, by exploiting non-cooperative sensors, integrated with cooperative information when available, we bridge the gap between ground awareness and aerial safety.
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GROUND-BASED PERCEPTION SYSTEMS

Airport Monitoring

Ground clutter mitigation, target classification and long-range sensing are the key characteristics of our systems. We target increased safety on ground using compact, off-the-shelf radar sensors.

Airspace surveillance

Our know-how is a key asset for modern aviation and emerging U-Space and Urban Air Mobility (UAM) ecosystems where more crowded skies call for innovative and performing surveillance solutions.

Counter-UAS (C-UAS)

We provide the software intelligence needed to secure critical assets against modern threats. Our algorithms enable robust Counter-UAS (C-UAS) capabilities, preventing unauthorized drone incursions by detecting and tracking weak targets even in high-clutter environments.

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