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Analysis of vertical strip wound fault-tolerant permanent magnet synchronous machines

机译:立式带卷容错永磁同步电机分析

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摘要

This paper investigates the behavior of a vector- controlled, fault-tolerant, permanent magnet motor drive system adopting a vertically placed strip winding (VSW) which can limit inter-turn short-circuit (SC) fault current to its rated value regardless of the position in the slot containing the shorted turns. The drives’ dynamic behavior is simulated using a per-phase equivalent circuit model with the winding inductances and resistances analytical calculated based on the machine geometry and fault location. A simplified thermal model is also grafted into the system model to effectively simulate the dynamic behavior of the machine during healthy, inter-turn SC fault and post-fault controlled scenarios. The SC fault current limiting capability, the additional losses and thermal behavior of the winding are studied and compared with conventional winding adopting round conductors winding (RCW). The proposed winding design is verified with Finite Element (FE) analysis and then validated experimentally. Results show that the VSW inherently limits the SC current, reduces its dependence on the position of the fault within the slot but results in an increase in AC losses.
机译:本文研究了采用垂直放置的带状绕组(VSW)的矢量控制,容错,永磁电动机驱动系统的行为,该系统可以将匝间短路(SC)故障电流限制为其额定值,而与包含短路匝的插槽中的位置。使用每相等效电路模型模拟驱动器的动态行为,并根据电机的几何形状和故障位置计算出绕组电感和电阻。简化的热模型也被移植到系统模型中,以有效地模拟机器健康,匝间SC故障和故障后控制情况下的机器动态行为。研究了SC故障限流能力,附加损耗和绕组的热性能,并将其与采用圆形导体绕组(RCW)的常规绕组进行了比较。提出的绕组设计已通过有限元(FE)分析进行了验证,然后进行了实验验证。结果表明,VSW固有地限制了SC电流,减小了其对插槽内故障位置的依赖性,但导致AC损耗增加。

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