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Modeling and Verification of Electrical Stress in Inverter-Driven Electric Machine Windings

机译:逆变器驱动的电机绕组中电应力的建模和验证

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This article develops a high-fidelity physics-based modeling approach to predict the voltage stress and current distributions in individual conductors of electric machine windings driven by pulsewidth modulation (PWM) voltages. This is the first step to better understand how PWM voltages stress the winding insulation of inverter-driven electric machines. The high-fidelity finite element (FE) models of electric machine windings in this article account for frequency-dependent winding parasitic parameters, and are capable of investigating the impact of wire positions on the winding parasitic parameters, hence the voltage stress and current distributions of individual conductors. A stator core with manually wound windings was built to verify the fidelity of the FE model. First, simulations and tests were conducted to obtain the voltage stress and current distributions in individual conductors in a simple form-wound coil, then a simple random-wound coil with a reduced number of conductors. Then, the model was extended to a complicated winding structure, including multiple coils, turns, and parallel strands. Tests were conducted to obtain the voltage and current of each conductor for this complicated winding. The measured and simulated results show good consistency. The effects of wire positions on voltage stress and current distributions were also investigated in both simulations and tests.
机译:本文开发了一种基于物理的高保真建模方法,以预测由脉宽调制(PWM)电压驱动的电机绕组的各个导体中的电压应力和电流分布。这是更好地了解PWM电压如何对逆变器驱动的电机的绕组绝缘施加应力的第一步。本文中的电机绕组的高保真有限元(FE)模型考虑了与频率相关的绕组寄生参数,并且能够研究导线位置对绕组寄生参数的影响,因此可得出电压应力和电流分布。个别导体。构建了带有手动绕线绕组的定子铁心,以验证FE模型的保真度。首先,进行了仿真和测试,以得到一个简单的绕线线圈中单个导体的电压应力和电流分布,然后是一个导体数量减少的简单的随机绕线线圈。然后,将模型扩展到复杂的绕组结构,包括多个线圈,匝和平行的线束。进行测试以获得该复杂绕组的每个导体的电压和电流。测量和模拟结果显示出良好的一致性。在仿真和测试中,还研究了导线位置对电压应力和电流分布的影响。

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