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Analysis of a bearingless switched reluctance motor with permanent magnets in the stator yoke

机译:定子轭中永磁磁体的无轴承开关磁阻电动机的分析

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Because a rotor has no permanent magnet and low manufacturing cost, a bearingless switched reluctance motor (BSRM) has unique advantages in medical and health, biochemical reactions, and other applications that need to be abandoned after single use or require the system to deal with high-temperature fluid. By analyzing the topological characteristics of a BSRM, rotor suspension and the mechanism of operation were described. A finite element model of a BSRM with a permanent magnet in the stator yoke (BSRM-PMSY) was established. The performance analysis of the BSRM was emphasized. The airgap flux distribution, no-load permanent magnet flux linkage, and torque of the motor were analyzed under zero load back-electromagnetic flow signals and levitation forces. The results verify that the optimization effect of the new motor on the levitation force is correct and a favorable decoupling control effect is found between the torque and levitation force, which provides the basis for efficient control of the subsequent prototype.
机译:因为转子没有永磁体和低制造成本,所以无轴承开关磁阻电机(BSRM)在医疗和健康,生物化学反应和需要在单一使用后需要放弃的其他应用具有独特的优势,或者要求系统处理高电平 - 温度。通过分析BSRM的拓扑特性,描述了转子悬架和操作机构。建立了定子轭(BSRM-PMSY)中具有永磁体的BSRM的有限元模型。强调了BSRM的性能分析。在零负载背电磁流量信号和悬浮力下分析了气凝胶焊剂分布,无负载永磁磁通连杆和电动机的扭矩。结果验证了新电机对悬浮力的优化效果是正确的,并且在扭矩和悬浮力之间发现了有利的去耦控制效果,这为后续原型提供了有效控制的基础。

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