翼
空气动力学
飞行试验
航空航天工程
机翼载荷
工程类
机翼外形
翼展
纵向静稳定性
雷达
无人机
飞机飞行力学
固定翼
过程(计算)
飞行动力学
飞行模拟器
模拟
理论(学习稳定性)
飞行包线
计算机科学
飞行操纵面
设计过程
航空学
汽车工程
空气动力
作者
Witold Zięba,Paweł Rzucidło,Łukasz Wałek
出处
期刊:Aerospace
[Multidisciplinary Digital Publishing Institute]
日期:2026-03-04
卷期号:13 (3): 240-240
标识
DOI:10.3390/aerospace13030240
摘要
This study presents the design and flight testing of a small unmanned aerial vehicle (UAV) in a flying wing configuration. The flying wing concept provides a low-drag platform suitable for observation, surveillance, and search-and-rescue missions. The UAV is designed to achieve inherent stability without the use of vertical stabilizers or artificial stabilization systems, which may reduce aerodynamic efficiency. The design process includes aerodynamic analyses aimed at balancing static and dynamic stability. Flight tests are conducted to validate the proposed configuration and to assess its ability to maintain stable flight under various operating conditions. The results confirm that the developed flying wing UAV achieves stable flight without artificial stabilization, demonstrating the potential of flying wing configurations as efficient platforms for small unmanned aerial vehicles. In particular, the concept is well suited for applications requiring long-endurance flights, low energy consumption, and reduced radar reflectivity.
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