Method of Electromagnetic Radiation Prediction and Suppression Based on Capacitance Parameter Equivalence in Power Converter System
Zhang Kaiyan1, Wang Shishan1, Li Mengzi1, Guo Jing1, Yan Wei2
1. College of Automation Engineering Nanjing University of Aeronautics and Astronautics Nanjing 211106 China;
2. College of Electrical and Automation Engineering Nanjing Normal University Nanjing 210042 China
Electromagnetic radiation interferes with electrical and electronic equipment in the form of electromagnetic wave in space, which is one of the key issues in research area of EMC. In view of the complexity of far-field radiation of power converter system (PCS), this paper takes the common-mode (CM) current as the main noise source, and transmits through parasitic capacitance between input cables and ground, thus CM current path model (CCP) is established. Moreover, CCP is formed as equivalent prediction model of radiation (EMR) by appropriate simplification. The parasitic capacitance of EMR and PCS is extracted by finite element method (FEM), and then geometric parameter of EMR is obtained by iterative design. The EMR is fed by signal generator to simulate radiation emission of PCS. Furthermore, PCS and EMR are tested in the anechoic chamber, and the radiation emission of two models is in good agreement, thereby verifying the feasibility of the method. At last, the scattering parameters are used to evaluate the effect of electromagnetic noise suppression. On this basis, the ferrite magnetic ring is selected to change scattering parameter matrix, and electromagnetic radiation can be suppressed. The recommended installation of magnetic ring is given that makes converter pass the GB 9254 ClassB test standard.
张开颜, 王世山, 李孟子, 郭静, 颜伟. 基于容性参数等效的功率变换器系统电磁辐射预估方法及抑制措施[J]. 电工技术学报, 2021, 36(2): 235-247.
Zhang Kaiyan, Wang Shishan, Li Mengzi, Guo Jing, Yan Wei. Method of Electromagnetic Radiation Prediction and Suppression Based on Capacitance Parameter Equivalence in Power Converter System. Transactions of China Electrotechnical Society, 2021, 36(2): 235-247.
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