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3-D FE Wire Modeling and Analysis of Electromagnetic Signatures From Electric Power Drive Components and Systems

机译:电力驱动部件和系统的3D FE线建模和电磁签名分析

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摘要

A 3-D finite-element (FE) optimized equivalent source numerical model for the analysis of low frequency electromagnetic field signatures in electric drives is proposed. An example electric drive system including a synchronous generator, an induction motor and power cables connecting a load is used to implement the model. The arrangement of the system setup is developed using a fully detailed 3DFE model to verify and compare with the results of the proposed equivalent source model. The proposed technique provides the exact field solution without large computational even with the presence of superposition. The equivalent source model (wire model) is created based on numerical techniques and physical theory of wave propagation. The superposition of the various components in this study is considered. The results of the proposed wire models match the results of the original models. For further verification, experimental results of the setup are compared with the numerical results. The importance of the proposed equivalent source is that it can be used for the evaluation of electromagnetic signatures and radiation patterns at the design stage. This enables performing various designs iterations to achieve compliant designs to electromagnetic compatibility standards. The proposed model can also be used for dynamic monitoring and diagnosing failures in the system.
机译:提出了一种3-D有限元(FE)优化等效源数值模型,用于分析电驱动器中的低频电磁场信号。使用包括同步发电机,感应电动机和连接负载的电力电缆的示例电驱动系统来实现该模型。系统设置的安排是使用完全详细的3DFE模型开发的,以验证并与建议的等效源模型的结果进行比较。所提出的技术提供了精确的现场解决方案,即使存在叠加也无需大量的计算。基于数值技术和波传播的物理理论创建等效源模型(导线模型)。考虑了本研究中各个组成部分的叠加。提出的线模型的结果与原始模型的结果匹配。为了进一步验证,将装置的实验结果与数值结果进行了比较。提出的等效光源的重要性在于,它可以在设计阶段用于评估电磁信号和辐射方向图。这样可以执行各种设计迭代,以实现符合电磁兼容性标准的设计。所提出的模型还可以用于动态监视和诊断系统中的故障。

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