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Comparative Analysis of Six-Step and Vector Controlled IPMSM under Inter-Turn Fault

机译:六步和六级控制IPMSM在变频故障下的比较分析

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Six-Step operation and vector or field oriented control have become the major control techniques for the brushless permanent magnet motors. However, their reliability is often challenged by the unusual behavior of the motor under the various type of faults. This paper analyzes and compares the performance of interior PM type motor under inter-turn short fault. The case study motor is analyzed using six step operation and field oriented control under different severities of fault. Finite element method based model of the motor is used with control drive designed in MatlabSimulink. In order to integrate the FEM model with control drives, a multidomain co-simulation technique is adopted for this study. Cosimulation enables us to analyze the extremely nonlinear behavior of the motor under inter turn short fault and the response of control drive simultaneously. Finally, the performance of each control drive under different severities of fault and the important post-fault life of the motor under both control techniques are evaluated. All results are verified by experimental test on a three-phase 400-watt IPM type motor.
机译:六步操作和向量或磁场定向控制已成为无刷永磁电动机的主要控制技术。然而,它们的可靠性通常因电机在各种类型的故障下的不寻常行为而挑战。本文分析并比较了内部PM型电机在匝间短断层下的性能。在不同的故障的不同句子下使用六步操作和场取向控制进行分析案例研究电机。基于有限元方法的电动机模型与Matlab Simulink中设计的控制驱动器一起使用。为了将FEM模型与控制驱动器集成,本研究采用多域共仿仿真技术。 Cosimulation使我们能够分析电动机的极端非线性行为在帧间转动短路和同时控制驱动器的响应下。最后,评估了每个控制驱动器的性能下的每个控制驱动器的性能和在两个控制技术下的电动机的重要故障寿命下进行了评估。所有结果都通过在三相400瓦IPM型电动机上进行实验测试来验证。

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