The company provides autonomous AI flight software for FPV drones that can track objects at speeds over 250 mph, delivering real-time adaptive speed and trajectory, multi‑drone coordination, and fully autonomous launch and landing without wired guidance.
Funding
Funding not disclosed
Founders
Product
Problem
Human‑piloted FPV drones are limited to speeds around 120 mph and require multiple operators, leading to high collision risk and loss of control at extreme velocities such as those seen in the Isle of Man TT (200+ mph). Manual control cannot reliably track fast‑moving objects, especially over long ranges where radio signals degrade.
Solution
Kessari delivers autonomous AI flight software that enables FPV drones to track objects at speeds exceeding 250 mph without any wired guidance or beacons. The system continuously adapts speed and trajectory in real time, allowing a single drone to follow a designated target such as a lead rider, specific vehicle, or team. Multi‑drone coordination expands coverage of an entire race, while fully autonomous launch and landing eliminate the need for manual piloting. Adaptive fallback and catch‑up modes ensure reliable tracking even when conditions change, providing a robust solution for high‑speed aerial filming and data capture.
Target Audience
Primary customers are motorsport broadcasters, event organizers, and production companies that require high‑speed aerial footage of races, as well as engineering teams needing precise, autonomous drone tracking for performance analysis.
Features
- AI‑driven flight controller capable of autonomous tracking above 250 mph
- Real‑time adaptive speed and trajectory adjustments based on target motion
- Predefined target priority settings (lead rider, specific vehicle, team)
- Multi‑drone coordination to maintain continuous coverage of fast‑moving subjects
- Fully autonomous launch and landing sequences without external beacons
- Adaptive fallback and catch‑up modes to maintain tracking reliability
- No reliance on wired guidance or RC signal links, reducing collision risk