首页> 外文会议>Industry Applications Conference, 2002. 37th IAS Annual Meeting. Conference Record of the >EMI characterization and simulation with parasitic models for a low-voltage high current AC motor drive
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EMI characterization and simulation with parasitic models for a low-voltage high current AC motor drive

机译:低压大电流交流电动机驱动器的寄生模型的EMI表征和仿真

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In this paper, a 12 V, 1 kW, permanent magnet AC motor drive is tested extensively at a wide frequency range, and the frequency spectra are partitioned for identification of noise sources and their propagation paths. Switching characterization of the power MOSFET and its body diode reverse recovery characterization are evaluated for circuit modeling. The parasitic components and common mode path are identified and measured with the time-domain reflectometry (TDR) method. The inverter circuit model is then constructed with major parasitic inductance and capacitance in device modules, passive components, leads, and interconnects. To verify the validity of the inverter model, a comparative study is performed with computer simulations and hardware experiments. The fundamental mechanisms by which the EMI noises are excited and propagated are analyzed, and the significant roles of parasitic elements coupling with device switching dynamics in EMI generations are examined. The results indicate that the identification of parasitic inductance through TDR measurement helps verify the voltage spike during turn-off, or vice versa. The conducted EMI noise caused by parasitic components of bus capacitor, DC bus, and devices is proven to be identifiable with the characterization and simulation techniques used in this paper.
机译:在本文中,对12 V,1 kW永磁交流电动机驱动器进行了广泛的广泛频率测试,并对频谱进行了划分,以识别噪声源及其传播路径。对功率MOSFET的开关特性及其体二极管反向恢复特性进行了电路建模评估。使用时域反射法(TDR)方法识别并测量了寄生成分和共模路径。然后,在器件模块,无源元件,引线和互连中,主要由寄生电感和电容构成的逆变器电路模型。为了验证逆变器模型的有效性,通过计算机仿真和硬件实验进行了比较研究。分析了激发和传播EMI噪声的基本机制,并研究了寄生元件与EMI产生中的器件开关动力学耦合的重要作用。结果表明,通过TDR测量来识别寄生电感有助于验证关断期间的电压尖峰,反之亦然。由本文使用的特性和仿真技术证明,由总线电容器,DC总线和设备的寄生元件引起的传导EMI噪声是可以识别的。

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