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Impact of neutral point current control on copper loss distribution of five phase PM generators used in wind power plants

机译:中性点电流控制对风电场五相永磁发电机铜损分布的影响

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摘要

Efficiency improvement under faulty conditions is one of the main objectives of fault tolerant PM drives. This goal can be achieved by increasing the output power while reducing the losses. Stator copper loss not only directly affects the total efficiency, but also plays an important role in thermal stress generations of iron core. In this paper, the effect of having control on neutral point current is studied on the efficiency of five-phase permanent magnet machines. Open circuit fault is considered for both one and two phases, and the distribution of copper loss along the windings are evaluated in each case. It is shown that only by having access to neutral point, it is possible to generate less stator thermal stress and more mechanical power in five-phase permanent magnet generators. Wind power generation and their applications are kept in mind, and the results are verified via simulations and experimental tests on an outer-rotor type of five-phase PM machine.
机译:在故障条件下提高效率是容错PM驱动器的主要目标之一。这个目标可以通过增加输出功率同时减少损耗来实现。定子铜损不仅直接影响总效率,而且在铁芯的热应力产生中也起着重要作用。在本文中,研究了控制中性点电流对五相永磁电机效率的影响。一相和两相都考虑开路故障,并分别评估绕组中铜损的分布。结果表明,只有接近中性点,才有可能在五相永磁发电机中产生较小的定子热应力和更大的机械功率。牢记风力发电及其应用,并通过在外转子型五相永磁电机上的仿真和实验测试验证了结果。

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