对电气化运输中使用的两种电机进行了电磁干扰比较

Mark Scott, Will Perdikakis, Chase Kitzmiller, K. Yost, Chad Miller
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引用次数: 0

摘要

本文研究了主动整流的双电平电压源逆变器(VSI)产生的传导电磁干扰(EMI)。本文对两种测试配置进行了评价。第一种配置使用航空航天绕线场同步(WF)机作为有源整流器的电源。对于第二种配置,有源整流器的电源是汽车内部永磁(IPM)机。每台机器在40kW的功率水平上提供标称115Vac,有源整流器将交流电压转换为标称270Vdc。该研究针对MIL-STD-461G和DO-160G评估了每种有源整流器配置,在这两种情况下,当IPM机器作为电源时,有源整流器产生更高的EMI。最后,设计并分析了4个二阶共模滤波器和4个四阶共模滤波器。结果是每台机器有两个过滤器通过MIL-STD-461G和两个过滤器符合DO-160G。正如预期的那样,基于ipm的有源整流系统在任何测试条件下都需要较大的共模电感。它需要的二阶滤波器电感比基于wf的有源整流系统高12倍。二阶滤波器的电感是DO-160G标准的80倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conducted EMI Comparison of Two Electric Machines used in Electrified Transportation
This paper examines the conducted electromagnetic interference (EMI) generated by a two-level voltage-source inverter (VSI) that performs active rectification. The paper evaluates two test configurations. The first configuration uses an aerospace wound-field synchronous (WF) machine as the active-rectifier’s power source. For the second configuration, the active rectifier’s power source is an automotive interior permanent magnet (IPM) machine. Each machine provides a nominal 115Vac at a power level of 40kW, and the active rectifier converts the ac-voltage to a nominal 270Vdc. The research evaluates each active rectifier configuration against MIL-STD-461G and DO-160G, and in both cases, the active rectifier produces higher EMI when the IPM machine is the power source. Finally, this study designs and analyzes four second-order common-mode filters and four fourth-order common-mode filters. The result is that each machine has two filters to pass MIL-STD-461G and two filters to comply with DO-160G. As expected, the IPM-based active rectification systems needs a larger common-mode inductance under every testing condition. It requires a second-order filter inductance that is 12-times higher than the WF-based active rectifier system. The second-order filter’s inductance is 80-times larger for DO-160G compliance.
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