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FE-Circuit Coupled Model of Electric Machines for Simulation and Evaluation of EMI Issues in Motor Drives

机译:电机的FE电路耦合模型,用于仿真和评估电机驱动器中的EMI问题

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摘要

A new FE-circuit coupled model is proposed to simulate the electromagnetic field interference (EMI) caused by terminal overvoltage and ground current of electric machines connected to driving circuits. The high frequency effects due to the PWM drive were considered in the transient FE-circuit coupled model of the motor using a two-step procedure. First, the resistance in each individual winding turn of a coil is evaluated by time harmonic high frequency FE analysis considering skin and proximity effects. The capacitances of the coil were calculated by an electrostatic FE analysis to form a distributed parameter model of the coil in each conducting region. Second, a lumped parameter model for the coil was obtained through a matrix reduction technique. The lumped models of the different coils were connected in series to form a per phase winding model. The FE-circuit coupled model of the motor is tested in a motor drive to evaluate the terminal over voltages and ground currents. The numerical results were successfully verified by the corresponding laboratory test measurements. The proposed model can be used as a novel computational prototyping tool which would allow the development to design and final product stages to be completed without the need for repeated build and test procedures in an industrial environment.
机译:提出了一种新的有限元电路耦合模型,以模拟由终端过电压和与驱动电路相连的电机的接地电流引起的电磁场干扰(EMI)。在电机的瞬态FE电路耦合模型中,采用两步过程考虑了PWM驱动产生的高频效应。首先,考虑到趋肤效应和邻近效应,通过时间谐波高频FE分析来评估线圈每个绕组匝中的电阻。通过静电有限元分析计算线圈的电容,以形成每个导电区域中线圈的分布参数模型。其次,通过矩阵约简技术获得了线圈的集总参数模型。将不同线圈的集总模型串联连接,以形成每相绕组模型。在电机驱动器中测试了电机的FE电路耦合模型,以评估端子的过电压和接地电流。数值结果已通过相应的实验室测试测量结果成功验证。所提出的模型可以用作新颖的计算原型工具,使开发设计和最终产品阶段得以完成,而无需在工业环境中进行重复的构建和测试程序。

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