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The Effect of Distributed Parameters on Conducted EMI from DC-Fed Motor Drive Systems in Electric Vehicles

机译:分布参数对电动汽车直流供电电机驱动系统传导EMI的影响

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The large dv/dt and di/dt outputs of power devices in DC-fed motor drive systems in electric vehicles (EVs) always introduce conducted electromagnetic interference (EMI) emissions and may lead to motor drive system energy transmission losses. The effect of distributed parameters on conducted EMI from the DC-fed high voltage motor drive systems in EVs is studied. A complete test for conducted EMI from the direct current fed(DC-fed) alternating current (AC) motor drive system in an electric vehicle (EV) under load conditions is set up to measure the conducted EMI of high voltage DC cables and the EMI noise peaks due to resonances in a frequency range of 150 kHz–108 MHz. The distributed parameters of the motor can induce bearing currents under low frequency sine wave operation. However the impedance of the distributed parameters of the motor is very high at resonance frequencies of 500 kHz and 30 MHz, and the effect of the bearing current can be ignored, so the research mainly focuses on the distributed parameters in inverters and cables at 500 kHz and 30 MHz, not the effect of distributed parameters of the motor on resonances. The corresponding equivalent circuits for differential mode (DM) and common mode (CM) EMI at resonance frequencies of 500 kHz and 30 MHz are established to determine the EMI propagation paths and analyze the effect of distributed parameters on conducted EMI. The dominant distributed parameters of elements responsible for the appearing resonances at 500 kHz and 30 MHz are determined. The effect of the dominant distributed parameters on conducted EMI are presented and verified by simulation and experiment. The conduced voltage at frequencies from 150 kHz to 108 MHz can be mitigated to below the limit level-3 of CISPR25 by changing the dominant distributed parameters.
机译:电动汽车(DC)的直流供电电机驱动系统中功率设备的大dv / dt和di / dt输出始终会引入传导的电磁干扰(EMI)辐射,并可能导致电机驱动系统的能量传输损失。研究了电动汽车中直流供电的高压电机驱动系统中分布参数对传导EMI的影响。建立了在负载条件下电动汽车(EV)中直流馈电(DC馈电)交流电(AC)电动机驱动系统的传导EMI的完整测试,以测量高压DC电缆的传导EMI和EMI在150 kHz–108 MHz频率范围内,由于谐振产生的噪声峰值。电动机的分布参数可以在低频正弦波操作下感应轴承电流。但是,在共振频率为500 kHz和30 MHz时,电动机的分布参数的阻抗很高,因此可以忽略轴承电流的影响,因此,研究主要集中在500 kHz的逆变器和电缆中的分布参数。和30 MHz,而不是电动机的分布参数对谐振的影响。建立了谐振频率为500 kHz和30 MHz时差模(DM)和共模(CM)EMI的相应等效电路,以确定EMI传播路径并分析分布参数对传导EMI的影响。确定了负责在500 kHz和30 MHz处出现共振的元素的主要分布参数。给出了主要分布参数对传导EMI的影响,并通过仿真和实验进行了验证。通过更改主要分布参数,可以将150 kHz至108 MHz频率处的感应电压降低到CISPR25的极限水平3以下。

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