UAV ENGINEER FOR OPTIMISATION OF FIREFIGHTING DRONE STABILISATION

H2020-EU.2.3.2.2.ID: 101000154
EC Contribution
€956
Consortium Size
0 orgs
Start Year
2020
Summary

DRONE HOPPER is a technological start-up founded in 2015 and devoted to the design, production and operation of drones or Unmanned Air Vehicles (UAV) for firefighting. Drones have the potential to overcome the limitations of helicopters and hydroplanes in firefighting, as no lives would be put at risks even during night operations and offering the possibility to fly at low altitudes to improve effectiveness. However, nowadays the use of drones in fires is limited to monitoring, surveillance and data collection tasks because current drone technologies based on electrical systems lack the necessary power to lift heavy loads. DRONE HOPPER has developed and validated heavy duty commercial drones, designed for transport of heavy loads (high water volumes) and with a patented system for spraying liquids increasing the effective coverage area of the intervention. This technology enables that our drones have an excellent potential to disrupt the market for unmanned firefighting. Nevertheless, we need to evolve the attitude control and stabilisation system to reach the required robustness and reliability of operations. This project is aimed to fill a job vacancy for an UAV engineer to join our R&D team as an Innovation Associate, with an extendable 1-year duration contract and reporting directly to our CTO. The profile of the Associate is a PhD researcher with experience in the development of flight control systems for rotatory wing UAVs, either helicopters or multi-rotors. The Associate will assume a leading role in the development, implementation and testing of an enhanced stabilisation control system for our drone platform, with the overall objective of contributing to increase the UAV´s payload capacity from current 150L to 600L.  

Consortium (0)

Project Results (7)

Source: CORDIS, the EU research results database.

Publications (6)
Systemic Integrated Unmanned Aerial System
International Journal of online and Biomedical engineering· 2022DOI
Ahmed Refaat Ragab Pablo Flores Peña Marco A. Luna Mohammad Sadeq Ale Isaac
"""Unmanned Aerial Vehicle Swarming"
International Conference on Engineering and Emerging Technologies (ICEET)· 2021DOI
A. R. Ragab, M. S. Ale Isaac, M. A. Luna and P. F. Peña
"A New Algorithm Using Hybrid UAV Swarm Control System for Firefighting Dynamical Task Allocation,"""
IEEE International Conference on Systems, Man, and Cybernetics (SMC)· 2021DOI
M. A. Luna, A. Refaat Ragab, M. S. Ale Isac, P. Flores Peña and P. C. Cervera
“Adapting Ad-hoc Routing Protocol for Unmanned Aerial Vehicle Systems”
International Journal Data. Science.· 2021
A. R. Ragab P. Flores
Mathematical Modeling and Designing a Heavy Hybrid-ElectricQuadcopter, Controlled by Flaps
UNMANNED SYSTEMS· 2021DOI
Mohammad Sadeq Ale Isaac* , Ahmed Refaat Ragab* , Enrique Caballero Garces Marco Andres Luna* , Pablo Flores Peña*, Pascual Campoy Cervera
WILD HOPPER Prototype for Forest Firefighting
· 2021DOI
Ahmed Refaat Ragab , Mohammad Sadeq Ale Isaac , Marco A. Luna Pablo Flores Peña
Other Results (1)
Periodic Reporting for period 1 - HOPPERSUP (UAV ENGINEER FOR OPTIMISATION OF FIREFIGHTING DRONE STABILISATION)