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An Explanation of the In-Wheel Motor Drive System’s Vibration at Low Velocity Using Motor-Wheel Frequency Characteristics

机译:使用电机 - 轮频率特性对车轮式电机驱动系统振动的解释

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The in-wheel-motor (IWM) drive system has some interesting features, such as the vibration of this structure at low velocity. An explanation of this phenomenon is given in this paper by considering the dynamics performance of the in-wheel motor drive system under small slip ratio conditions. Firstly, a frequency response function (FRF) is deduced for the drive system that is composed of a dynamic tire model and a simplified motor model. Furthermore, an equation between the resonance velocity with the parameters of the drive system is obtained by combining the resonance frequency of this drive system with the fundamental frequency of the motor. The correctness of the equation is demonstrated through simulations and experimental tests on different road surfaces. The impact of different parameters on the vibration can be explained by this equation, which can give the engineer some instructions to design a control method to avoid this feature.
机译:轮内电机(IWM)驱动系统具有一些有趣的特征,例如在低速下该结构的振动。本文通过考虑在小滑动比率条件下的轮式电动机驱动系统的动态性能中给出了对这种现象的说明。首先,推导出由动态轮胎模型和简化电动机模型组成的驱动系统的频率响应函数(FRF)。此外,通过将该驱动系统的谐振频率与电动机的基频相结合,获得具有驱动系统参数之间的谐振速度之间的等式。通过模拟和不同路面上的实验测试证明了等式的正确性。可以通过该等式解释不同参数对振动的影响,这可以为工程师提供一些指令设计控制方法以避免此功能。

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