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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >A framework of frequency-domain flight dynamics modeling for multi-rotor aerial vehicles
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A framework of frequency-domain flight dynamics modeling for multi-rotor aerial vehicles

机译:多旋翼飞行器频域飞行动力学建模框架

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摘要

In this paper, a frequency-domain modeling methodology that can be applied to various multi-rotor aerial vehicles is introduced. The primary contribution of this work is a systematic integration of the first-principles modeling and system identification approaches to generate flight dynamics models with good accuracy. The first-principles modeling and model linearization are conducted to obtain an appropriate baseline model for the subsequent system identification. Next, a four-step parameter identification process, which consists of: (1) baseline model determination; (2) data collection and preprocessing; (3) mode-wise parameter identification; and (4) model fidelity validation, is performed in the frequency domain to identify the uncertain parameters. Our method has been applied to two custom-built multi-rotor aircraft (one X-type quadcopter and one QU4D quadcopter) for efficiency demonstration.
机译:本文介绍了一种可应用于多种多旋翼飞行器的频域建模方法。这项工作的主要贡献是第一原理建模和系统识别方法的系统集成,以生成具有良好准确性的飞行动力学模型。进行第一性原理建模和模型线性化,以获得适当的基线模型以用于后续的系统识别。接下来,分为四个步骤的参数识别过程,包括:(1)确定基线模型; (2)数据收集与预处理; (3)模式参数识别; (4)在频域中进行模型保真度验证,以识别不确定参数。我们的方法已应用于两架定制的多旋翼飞机(一架X型四轴飞行器和一架QU4D四轴飞行器)进行效率演示。

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