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Simulation Model of Common-Mode Chokes for High-Power Applications

机译:大功率应用共模扼流圈的仿真模型

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摘要

Linear and nonlinear Cauer-network models for nanocrystalline inductor cores are developed and used for circuit simulations of common-mode chokes for inverter-based drive systems of several hundred kW. Experimental measurements of the chokes' performance in a high-power test bed are compared to the model results. When the model is based on measured characteristics of the material used, the match to measured behavior is good. Damping inherent in the material characteristic is adequate, such that additional damping is not useful. The primary limitation to accurate prediction of loss in practice is the tolerance on specifications of core characteristics, particularly at high frequency where limits are not specified.
机译:开发了用于纳米晶电感器芯的线性和非线性Cauer网络模型,并将其用于几百千瓦基于逆变器的驱动系统的共模扼流圈的电路仿真。将高功率测试台中扼流圈性能的实验测量结果与模型结果进行了比较。当模型基于所用材料的测量特性时,与测量行为的匹配就很好。材料特性中固有的阻尼是足够的,因此附加阻尼是无用的。在实践中,准确预测损耗的主要限制是对核心特性规范的容忍度,尤其是在未指定限制的高频情况下。

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