Lark 3000 Reconnaissance UAV

Medium-Long Endurance Reconnaissance/Payload UAV

The tail-sitter VTOL (Vertical Takeoff and Landing) fixed-wing UAV is capable of terrain-independent vertical takeoff and landing, automatic transition between vertical and horizontal flight modes, and fully autonomous operation. These advantages enable it to perform effectively in complex environments such as mountainous areas, jungles, and densely built-up urban zones. Featuring a foldable design, its wings and tail can be deployed or stowed within seconds, allowing for rapid deployment by a single operator.
foldable design
VTOL
automatic transition
advanced functions
Rapid Deployment

MAIN FEATURES

+ Integration of artificial intelligence with UAV industrial application technologies enables automated recognition, intelligent tracking, and enhanced automation capabilities.

– The system autonomously identifies targets and executes response measures without human intervention – including evidence collection, automatic alerts, and persistent target tracking.
– A unified control interface manages aircraft operation, route planning, and payload control – including gimbal adjustment, video monitoring, and click-to-track automated targeting.

 

+ Our high-efficiency UAV platform, empowered by AI and hive-mesh base station autonomous operations, delivers optimized solutions for reconnaissance, inspection, and mapping applications.

 

+ The system demonstrates extensive professional applications in:Energy infrastructure inspection (oil/power), Forest fire prevention, Environmental monitoring, Maritime patrol, Road inspection, Traffic control, Narcotics interdiction, Geospatial surveying.

Specifications

Autonomous Drone Operations Base Station

To enable fully autonomous drone operations without human intervention, we’ve developed the patented Hive Base Station. It combines launch, recovery, storage, charging, and data handling in one system, supporting unmanned, multi-drone missions, rapid deployment, and frequent inspections. Available in fixed and mobile (command vehicle) formats, it boosts efficiency and emergency response while eliminating the need for manual drone transport.

 

Fixed base stations can be placed at command centers or field locations for high-frequency operations and also act as communication relays. In emergencies, the system selects the nearest station for rapid UAV deployment, with drones returning to their original or alternate stations for automated recovery and charging.
The mobile command vehicle integrates a drone base station with long-range comms and onboard power, enabling coordinated multi-UAV missions with high frequency and broad coverage—maximizing the benefits of mobile deployment.

Coverage-Optimized Base Station Network

Traditional UAVs struggle with limited range and signal transmission during extended missions. Our solution uses a cellular-grid of autonomous base stations with landing platforms and charging docks, allowing UAVs to recharge, relay data, and continue missions seamlessly—creating a fully integrated, large-area unmanned aerial operation system.

 

Implementation Example:
Base stations spaced at 50km intervals in key reconnaissance zones form a continuous network. The system automatically assigns UAVs to optimal nearby stations, achieving true end-to-end autonomy for charging, storage, and mission execution.

Get in touch

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