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December 10, 2025Drones13 citationsOpen Access

Electric Propulsion and Hybrid Energy Systems for Solar-Powered UAVs: Recent Advances and Challenges

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NINoraini IsmailNKN. L. Mohd KamalNNN. Norhashim

Key Points

  • This review aims to analyze advancements in electric propulsion and hybrid energy systems for solar-powered UAVs.
  • Comprehensive analysis of electric propulsion architecture
  • Examination of hybrid energy management strategies
  • Review of solar-based power integration techniques
  • Discussion of emerging technologies like wireless charging and flexible PV materials
  • Highlights advancements in electric propulsion systems for UAVs
  • Identifies challenges related to energy density and component integration
  • Discusses power management techniques like maximum power point tracking

Abstract

Unmanned aerial vehicles (UAVs) are increasingly utilized across civilian and defense sectors due to their versatility, efficiency, and cost-effectiveness. However, their operational endurance remains constrained by limited onboard energy storage. Recent research has focused on electric propulsion systems integrated with hybrid energy sources, particularly the combination of solar cells and advanced battery technologies to overcome this limitation. This review presents a comprehensive analysis of the latest advancements in electric propulsion architecture, solar-based power integration, and hybrid energy management strategies for UAVs. Key components, including motors, electronic speed controllers (ESCs), propellers, and energy storage systems, are examined alongside emerging technologies such as wireless charging and flexible photovoltaic (PV) materials. Power management techniques, including maximum power point tracking (MPPT) and intelligent energy control algorithms, are also discussed in the context of long-endurance missions. Challenges related to energy density, weight constraints, environmental adaptability, and component integration are highlighted, with insights into potential solutions and future directions. The findings of this review aim to guide the development of efficient, sustainable, and high-endurance UAV platforms leveraging electric-solar hybrid propulsion systems.

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Cite This Study

Ismail et al. (2025) studied this question.

synapsesocial.com/papers/69401d412d562116f28f8364https://doi.org/10.3390/drones9120846
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