Evaluating a 10 kW PEM fuel cell system for unmanned aerial vehicles
In this study, the thermal stability of a PEM fuel cell system for UAVs was analyzed using an integrated system model in MATLAB/Simulink.
This paper comprehensively reviews renewable power systems for unmanned aerial vehicles (UAVs), including batteries, fuel cells, solar photovoltaic cells, and hybrid configurations, from historical perspectives to recent advances. The study evaluates these systems regarding energy density, power output, endurance, and integration challenges.
Hydrogen fuel cells and the economics of unmanned aerial vehicles (UAVs) are gaining global attention. With higher energy densities, fuel cells can overcome the range limitations of lithium battery-powered aircraft. This paper is to address two important issues often overlooked in research on fuel cell UAVs.
His research interests include fuel cell systems, thermal and energy management for eco-friendly powertrain. Jung, W., Kim, HS. Evaluating a 10 kW PEM fuel cell system for unmanned aerial vehicles at different cruising altitudes: A thermal analysis.
Expanding mini-UAV energy storage demonstrates promoting clean, sustainable unmanned aeronautics on smaller scales. Furthermore, Tian et al. investigated the interconnected relationships between flight dynamics and power distribution for fixed-wing hybrid electric UAVs combining solar panels, fuel cells, and batteries.
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