Regenerative Testing of Multiphase Machines with Multiple Three-phase Windings

M. Zabaleta, E. Levi, Martin Jones
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引用次数: 3

Abstract

Testing of high power machines requires a significant investment into sophisticated equipment and floor space. Over the years, various methods aimed at reducing the cost have been developed, including, for example, mixed frequency testing (also known as synthetic loading) and back-to-back testing. While most of these techniques can be directly applied to multiphase machines as well, a particular stator winding topology - namely, the use of multiple three-phase windings, leads to a possibility to realise regenerative testing of the machine by operating some three-phase windings in motoring and some in generation. As a consequence, testing can be conducted without the need to have a loading machine and with very small energy consumption, governed by the combined machine and inverter losses. The paper describes application of regenerative testing in conjunction with machines with an even number of three-phase windings and details the control scheme used for a permanent magnet six-phase synchronous machine. Full power testing is enabled without the requirement for a mechanical load. Simulation and experimental results, illustrating the operation of one three-phase winding in motoring and the other in generation and collected from a 150 kW rig with a permanent magnet synchronous machine, are included.
具有多个三相绕组的多相电机的再生测试
高功率机器的测试需要在复杂的设备和占地面积上进行大量投资。多年来,各种旨在降低成本的方法已经开发出来,例如,混合频率测试(也称为合成加载)和背靠背测试。虽然这些技术中的大多数也可以直接应用于多相电机,但特定的定子绕组拓扑-即使用多个三相绕组,可以通过在电机中操作一些三相绕组和在发电中操作一些三相绕组来实现机器的再生测试。因此,测试可以在不需要负载机的情况下进行,并且能量消耗非常小,由机器和逆变器的组合损耗控制。本文介绍了再生试验在三相绕组为偶数的电机中的应用,并详细介绍了永磁六相同步电机的控制方案。无需机械负载即可实现全功率测试。仿真和实验结果,说明了一个三相绕组在电机和另一个在发电中运行,并收集了一个150kw的永磁同步电机钻机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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