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Iron Losses of Dual-Star PMSMs with Open-Circuit Fault under Fault-Tolerant Control

机译:容错控制下开路故障双星PMSMS的铁损

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In this paper the iron losses of dual-star permanent-magnet synchronous machines under fault-tolerant control with phase open-circuit fault are investigated. Various faults including one or two open-circuits in different phases are considered. The iron loss terms, namely hysteresis, eddy-current, anomalous, and rotational losses, considering harmonics are calculated based on a priori knowledge of magnetic field distribution obtained by magnetostatic FE simulations. A variety of motor topologies including laminated-core surface-mounted or interior permanent magnet with distributed or concentrated winding are studied. As far as the core losses are concerned, it is observed that the machines are ill-conditioned under the post-fault control, i.e. the iron losses considerably increase, particularly at high speeds. Moreover, in contrast to the healthy case, the iron losses will not be distributed evenly among the stator teeth which leads to concentration of loss in some segments of the core.
机译:本文研究了双星永磁同步机的耐铁损失在具有相开路故障的容错控制下。 考虑了各种故障,包括不同阶段的一个或两个开放电路。 考虑到谐波的铁损术,即滞后,涡流,异常和旋转损耗是基于通过磁静否模拟获得的磁场分布的先验知识来计算。 研究了各种电动机拓扑,包括具有分布式或集中绕组的层压芯表面安装或内部永磁体。 就核心损失而言,据观察,机器在故障后控制下不均匀,即铁损失显着增加,特别是高速增加。 此外,与健康的情况相比,铁损不会在定子齿中均匀地分布,这导致芯的一些区段中的损失浓度。

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