Robonair provides an autonomous drone ecosystem for precision agriculture and payload delivery, featuring RTK positioning for centimeter-level accuracy and 4G/5G connectivity for BVLOS operations. Its AI-powered system enables efficient, heavy-payload aerial tasks with enhanced safety and reduced manual intervention.
Funding
Funding not disclosed
Founders
Product
Problem
Traditional aerial operations for tasks like precision agriculture and payload delivery are constrained by limited range, accuracy, and payload capacity. This necessitates frequent manual intervention, increases operational costs, and restricts the scope of autonomous drone applications.
Solution
Robonair offers an intelligent, autonomous drone ecosystem designed to overcome these limitations. The platform leverages Real-Time Kinematic (RTK) positioning for centimeter-level accuracy, enabling precise navigation and operation. Its AI-powered system supports autonomous, assisted, or pilot-controlled flight modes, catering to various user skill levels. The drones are engineered for heavy payload delivery and feature integrated 4G/5G connectivity, facilitating Beyond Visual Line of Sight (BVLOS) operations for enhanced efficiency and safety. Robonair's ecosystem includes a portable RTK system and a complimentary NTRIP service for accurate positioning.
Target Audience
The primary target audience includes agricultural enterprises, logistics providers, and industrial operators requiring advanced aerial capabilities for tasks such as precision farming, automated delivery, and remote monitoring.
Features
- Autonomous drone system with AI-driven flight control for precision operations.
- RTK positioning technology providing centimeter-level accuracy for navigation and task execution.
- Heavy payload delivery capability for diverse industrial applications.
- Integrated 4G/5G connectivity enabling Beyond Visual Line of Sight (BVLOS) operations.
- Modular AI and flight engines for enhanced security and third-party hardware/software interoperability.
- Base station application supporting autonomous flight, manual control, and mission planning via Google Maps integration.
- Proprietary robotic arm with 4 degrees of freedom for delicate tasks such as precision fruit harvesting.
- Environmentally conscious design with zero carbon emissions.
- NTRIP service for enhanced positioning accuracy and network integration.