Dynamics Modeling and Simulation of Multi-rotor UAV based on the Composite Wind Field Model

Jingru Wang, Jianfeng Yang, Zhongqing Yang
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引用次数: 1

Abstract

To study the influence of compound wind field disturbance on the stability of multi-rotor UAV(unmanned aerial vehicle), a dynamics modeling and simulation method for multi-rotor UAV under the compound wind field model is proposed. Firstly, based on the idea of equivalent modeling in practical engineering, the models of uniform wind, gust, turbulence and wind shear are constructed respectively. The numerical analysis and simulation research are then carried out. Second, the dynamic model of multi rotor UAV under the action of composite wind field is deduced, and the attitude control model is derived. Finally, the numerical analysis software is utilized to simulate and analyze the attitude response of the multi-rotor UAV under the condition of wind and no wind, and analyze its control performance under the interference of compound wind field. The simulation results show that the dynamic model of the multi-rotor UAV under the influence of the wind field can accurately reflect its dynamic performance under the action of the wind field, and the output attitude angle fluctuation is less than 2°. The obtained results show that the established wind field model can be effectively applied to the research on the flight performance of multi-rotor UAV under the interference of compound wind field.
基于复合风场模型的多旋翼无人机动力学建模与仿真
为了研究复合风场扰动对多旋翼无人机稳定性的影响,提出了复合风场模型下多旋翼无人机动力学建模与仿真方法。首先,基于工程实际中等效建模的思想,分别构建了均匀风、阵风、湍流和风切变模型;然后进行了数值分析和仿真研究。其次,推导了复合风场作用下多旋翼无人机的动力学模型,并推导了姿态控制模型;最后,利用数值分析软件对多旋翼无人机在有风和无风条件下的姿态响应进行仿真分析,分析其在复合风场干扰下的控制性能。仿真结果表明,多旋翼无人机在风场作用下的动力学模型能准确反映其在风场作用下的动力学性能,且输出姿态角波动小于2°。结果表明,所建立的风场模型可以有效地应用于复合风场干扰下多旋翼无人机的飞行性能研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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