Measurement and 3D Simulation Study of Shielding Properties of HV Connectors used in Electric and Hybrid Vehicles

F. Bogdanov, Davit Imnadze, A. Gheonjian, I. Oganezova, I. Badzagua, D. Karkashadze, R. Jobava
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Abstract

This paper is devoted to the experimental validation of the 3D modeling approach for studying the shielding properties of high voltage (HV) connectors used in electric and hybrid vehicles with an arbitrary number, shape, size and location of apertures. The 3D simulation model is based on the method of moments (MoM), and novelty is in special implementation of Mitzner surface impedance boundary conditions (SIBC) for nested regions bounded by thin material sheets with apertures. This implementation implies the so-called null-field approach. Both measured and simulated results for the transfer impedance of prototype models of the HV connectors are presented and compared for various numbers and shapes of apertures.
电动及混合动力汽车用高压连接器屏蔽性能测量及三维仿真研究
本文对用于研究任意孔数、形状、尺寸和位置的电动和混合动力汽车用高压连接器屏蔽性能的三维建模方法进行了实验验证。该三维仿真模型基于矩量法(MoM),其新颖之处在于特殊实现了以带孔的薄材料片为界的嵌套区域的Mitzner表面阻抗边界条件(SIBC)。这种实现意味着所谓的空字段方法。给出了高压连接器原型模型的传递阻抗的测量和仿真结果,并对不同孔径数量和形状下的传递阻抗进行了比较。
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