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Nonlinear Lumped-Circuit Model for Switched Reluctance Motors Exhibiting Core Losses

机译:具有磁芯损耗的开关磁阻电机非线性集总电路模型

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摘要

A new nonlinear lumped parameter model is proposed for a switched reluctance motor (SRM) with core losses. The components of the model and their origin are justified by finite-element simulations and experimental tests. The winding resistance and the leakage inductance are analyzed by different methods taken from the literature, and a new algorithm is proposed to overcome their shortcomings such as the nonbiunivocal flux linkage versus current relationship. In contrast to previous works, the nonlinear elements for modeling the magnetic core, such as the incremental magnetizing inductance and the core-loss resistance, are determined together and simultaneously for each value of the phase current and the rotor position. The performance of the new model and the methodology proposed for estimating its components are analyzed for different excitation types and rotor positions. The core losses are evaluated by the proposed model and by two well-known predictive models, and the results are compared to illustrate the suitability of the former. Finally, the dynamic behavior of the model, acting as an ac self-excited generator, is considered.
机译:针对具有磁芯损耗的开关磁阻电机(SRM),提出了一种新的非线性集中参数模型。通过有限元模拟和实验测试证明了模型的组成及其来源。通过文献中的不同方法分析了绕组电阻和漏感,并提出了一种新的算法来克服它们的缺点,如非单声道磁链与电流之间的关系。与以前的工作相反,对于相电流的每个值和转子位置,一起并同时确定用于建模磁芯的非线性元素,例如增量磁化电感和磁芯损耗电阻。针对不同的励磁类型和转子位置,分析了新模型的性能和提出的估算其组件的方法。通过所提出的模型和两个众所周知的预测模型对铁损进行了评估,并对结果进行了比较以说明前者的适用性。最后,考虑了模型的动态行为,它充当交流自激发生器。

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