Airober provides high‑performance drones equipped with an AI‑driven Hydrogen Energy Management System that calculates total system energy, predicts consumption, and stores a dynamic power reserve for emergency landings or rapid maneuvers.
Funding
Funding not disclosed
Founders
Product
Problem
Conventional battery‑powered drones are constrained by short flight durations, slow recharging, limited payload capacity, and safety concerns during high‑energy maneuvers. These limitations reduce operational efficiency for industries that require long‑range monitoring, heavy‑load transport, or rapid turnaround between missions.
Solution
Airober delivers drones powered by a hydrogen‑based propulsion system managed by an AI‑driven Energy Management System (EMS). The EMS continuously calculates the total energy available, forecasts consumption patterns, and maintains a dynamic power reserve that can be released for emergency landings or sudden high‑speed actions. This approach provides significantly longer flight times and enables rapid on‑site refueling, while supporting higher payloads compared with typical electric drones. The hydrogen fuel source reduces carbon emissions, contributing to more sustainable aerial operations. Integrated safety controls and real‑time energy optimization improve reliability across diverse use cases such as precision agriculture, construction site surveying, logistics delivery, and infrastructure inspection.
Target Audience
Primary customers are enterprises in agriculture, construction, logistics, energy infrastructure, and media production that require long‑range, high‑payload, and environmentally sustainable drone solutions.
Features
- AI‑based Hydrogen Energy Management System that monitors total energy, predicts usage, and optimizes power distribution
- Dynamic power reserve that can be deployed for emergency landings or rapid acceleration, enhancing operational safety
- Extended flight endurance achieved through high‑energy‑density hydrogen fuel cells
- Rapid on‑site refueling capability that minimizes downtime between missions
- Increased payload capacity enabled by efficient hydrogen propulsion
- Eco‑friendly operation with zero‑emission hydrogen fuel
- Application‑specific modules for agriculture (crop health monitoring, spraying), construction (aerial surveys, hazardous area access), delivery (heavy‑load transport), energy infrastructure inspection, and media capture