May 22, 2025
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Air & Space Defense  2024, Vol. 7 Issue (4): 99-105    DOI:
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Research on Flight Path Planning Under Complex Environmental Constraints
LI Xu1, DONG Wei1, DU Zehong2
1. School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China; 2. Shanghai Electro-Mechanical Engineering Institute, Shanghai 201109, China
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Abstract  With battlefields becoming more complex, timely and accurate information acquisition is crucial for decision-making. Traditional unmanned aerial vehicle (UAV) reconnaissance path planning methods can no longer adapt to dynamic and complex environments effectively. This study proposed a reconnaissance path planning technique for unmanned aerial vehicles (UAVs) using the optimization of Bézier curves, which can accurately construct flight paths adapted to complex environments by utilizing the flexibility and geometric properties of Bézier curves and combining with the secondary optimization algorithm. The execution efficiency and safety of this path-planning technique were verified in actual flight tests conducted in a simulated battlefield environment. Comparative experiment results show that the proposed technique significantly enhances the efficiency and accuracy of UAV reconnaissance, allowing rapid decision-making and action in battlefields, proving its feasibility and effectiveness in practical applications.
Key wordsunmanned aerial vehicle (UAV)      battlefield      reconnaissance      trajectory generation      Bézier curve     
Received: 01 April 2024      Published: 10 September 2024
ZTFLH:  V 279  
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https://www.qk.sjtu.edu.cn/ktfy/EN/     OR     https://www.qk.sjtu.edu.cn/ktfy/EN/Y2024/V7/I4/99
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