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Stator Harmonic Currents in VSI-Fed Synchronous Motors With Multiple Three-Phase Armature Windings

机译:带多个三相电枢绕组的VSI馈电同步电动机中的定子谐波电流

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摘要

Electric motors equipped with multiple three-phase windings are often used for the advantages they offer in terms of reliability, performance, and inverter power segmentation. When the windings are fed by independent voltage-source inverters (VSIs), circulation harmonic currents can occur in stator phases. If the motor is an induction machine, circulation currents are known to originate form transient imbalances in the applied voltages due to inverter switching. This paper investigates the problem when a synchronous machine is used and shows how additional (and possibly major) sources for circulation currents can arise in this case (even with a round-rotor design) due to the nonsinusoidal air-gap flux distribution. The phenomenon is illustrated for a 45-MW quadruple three-phase synchronous motor supplied by four medium-voltage (MV) multilevel VSIs. Its circulation currents are predicted with two alternative methods, i.e., analytically and from time-stepping finite-element simulation. The results obtained in both ways are shown to well match measurement results collected on the actual motor during full-load system testing.
机译:配备有多个三相绕组的电动机通常会因其在可靠性,性能和逆变器功率分段方面的优势而被使用。当绕组由独立的电压源逆变器(VSI)供电时,定子相中可能会出现循环谐波电流。如果电动机是感应电机,则已知由于逆变器的开关,循环电流是由施加电压的瞬态不平衡引起的。本文研究了使用同步电机时的问题,并说明了由于非正弦气隙通量分布,在这种情况下(即使是圆转子设计)如何会产生额外的(可能是主要的)循环电流源。对于由四个中压(MV)多电平VSI提供的45兆瓦四相三相同步电动机,该现象得到了说明。它的循环电流可以通过两种替代方法进行预测,即分析方法和时步有限元模拟方法。两种方式获得的结果均显示出与满负荷系统测试期间实际电动机上收集的测量结果完全匹配。

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