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Analytical Model of a Six-Phase PMSM for the Simulation of Stator Winding Faults on Turn Level

机译:六级永磁同步电动机的分析模型,用于在转弯水平处定子绕组故障的仿真

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The major limitation of the lifetime and reliability of electrical machines are stator winding faults. Inter-turn faults are for that matter often the origin of more severe faults, which can lead to complete system failures. Particularly, three-phase permanent magnet synchronous machines (PMSMs) have significant drawbacks in terms of fault tolerant operation. In comparison, six-phase PMSMs are more complex to analyze and to operate, but for this reason, also offer greater possibilities for the control scheme during fault. This paper presents the first analytical machine model to investigate the behavior of six-phase PMSMs with stator winding faults on turn level. In order to keep the model compact, the levels of abstraction vary within the stator winding circuit. The machine model is acausally implemented, which allows the simulation with current sources and current controlled voltage sources. The simulation results of the presented model are compared with the simulation results of an equivalent finite element analysis model. The average torque differs between the two models in case of an inter-turn fault at nominal load operation by 0.3 %, the amplitude of the fault current differs by 3.3 % and the frequency spectra of the voltages show equal characteristics, while the computation time is 200 times faster with the analytical model. We use the developed model for the analysis of the machine behavior under stator winding faults relevant in practice. With the machine analysis's outcome, we are able to develop a more sophisticated fault management system, which enhances fault tolerant operation in comparison with three-phase PMSMs.
机译:电机寿命和可靠性的主要限制是定子绕组故障。因此,匝间故障通常是更严重故障的根源,这可能导致完全的系统故障。特别地,三相永磁同步电机(PMSM)在容错操作方面具有明显的缺点。相比之下,六相PMSM的分析和操作更为复杂,但是由于这个原因,也为故障期间的控制方案提供了更大的可能性。本文提出了第一个分析机模型,用于研究在匝级具有定子绕组故障的六相永磁同步电机的行为。为了保持模型的紧凑性,定子绕组电路中的抽象级别有所不同。机器模型是严格实现的,因此可以使用电流源和电流控制的电压源进行仿真。将该模型的仿真结果与等效有限元分析模型的仿真结果进行比较。如果在额定负载下发生匝间故障,则两个模型之间的平均转矩相差0.3%,故障电流的幅度相差3.3%,电压频谱具有相同的特性,而计算时间为分析模型的速度提高了200倍。我们使用开发的模型来分析在实践中相关的定子绕组故障下的电机行为。借助机器分析的结果,我们能够开发出更复杂的故障管理系统,与三相PMSM相比,该系统可增强容错操作。

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