地桥效应对降低三相电机驱动系统传导辐射的影响

Yuandong Guo, Srinath Penugonda, Minho Kim, Junesang Lee, Jungrae Ha, Sangwon Yun, J. Fan, Hongseok Kim
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引用次数: 2

摘要

在电动汽车中,脉宽调制方案以其高性能被广泛应用于三相电机驱动系统中。然而,半导体器件的快速开关可能会产生过高的dv/dt和di/dt,从而产生电磁干扰(EMI)问题,使其难以满足电磁兼容标准。本文基于CISPR 25组件级测试装置,在调幅频段530 kHz ~ 1.8 MHz范围内对三相电机驱动系统进行了电流传导发射测试。在此条件下,通过测量确定了电机驱动系统的共模噪声产生机理。研究发现,由于三相PWM逆变器直流输入端的PCB结构和EMI滤波器网络的不平衡,导致三相PWM逆变器的DM开关电流通过电缆线束转换为CM电流是其主要机制。基于这一发现,在数字信号和电源GND网之间添加地(GND)桥以降低CM噪声。通过实验验证了地桥效应对AM波段CM噪声的抑制作用,并通过电路仿真进一步研究了该效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ground Bridge Effect on Reduction of Conducted Emission from Three-Phase Motor Drive System
In electric vehicles, the pulse width modulation scheme is widely used in three-phase motor drive systems for its high performance. However, the fast switching of semiconductor devices may induce excessively high dv/dt and di/dt, which can cause electromagnetic interference (EMI) issues, making it difficult to satisfy electromagnetic compatibility standards. In this paper, the current conducted emission test for a three-phase motor drive system is performed based on CISPR 25 component-level testing setup for AM radio frequency band, which is from 530 kHz to 1.8 MHz. Under these conditions, common-mode (CM) noise generation mechanisms of the motor drive system are identified through measurements. It is found that the dominant mechanism is the mode conversion from differential mode (DM) switching current of the three-phase PWM inverter to CM current through the cable harness due to the imbalances in the PCB structure and EMI filter network which are at the dc input side of the three-phase inverter. Based on this finding, ground (GND) bridges are added between the digital signal and power GND nets to reduce the CM noise. The GND bridge effect on the reduction of CM noise in AM band is experimentally verified and further studied using circuit simulations.
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