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Increasing the saliency ratio of fractional slot concentrated winding interior permanent magnet synchronous motors

机译:提高分数槽集中绕组内部永磁同步电动机的显着率

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摘要

In permanent magnet synchronous motor (PMSM) servo systems, the saliency ratio is an important factor in sensorless control and flux-weakening control. Compared with the interior PMSM (IPMSM) with distributed windings, the IPMSM with concentrated windings gains more popularity in servo system applications. However, the saliency ratio of current fractional slot concentrated windings (FSCWs) IPMSM is low and hard to increase, without much literature investigating how to improve the ratio. In this paper, the components of - and -axes inductances of FSCW IPMSM are determined, a novel concept named mechanical phase region is introduced and the key parameters influencing the saliency ratio of FSCW PMSMs have been investigated through thorough theoretical analysis and simulation. The design principles on increasing the saliency ratio of FSCW IPMSMs are proposed and the maximum saliency ratio of a 10 poles 12 slots motor is obtained. On the basis of the theory, a novel rotor structure with higher saliency ratio is designed. A new experimental method of measuring - and -axes inductances closes this paper with three experimental prototypes built to verify the theory and simulation results.
机译:在永磁同步电动机(PMSM)伺服系统中,凸度比是无传感器控制和弱磁控制的重要因素。与具有分布式绕组的内部PMSM(IPMSM)相比,具有集中绕组的IPMSM在伺服系统应用中越来越受欢迎。但是,目前的分数槽集中绕组(FSCW)IPMSM的显着性比率很低,很难增加,而没有太多文献研究如何改善该比率。在本文中,确定了FSCW IPMSM的-和-轴电感的成分,引入了一个新颖的概念,称为机械相区,并通过透彻的理论分析和仿真研究了影响FSCW PMSM凸度比的关键参数。提出了提高FSCW IPMSM显着比的设计原则,并获得了10极12槽电机的最大显着比。在该理论的基础上,设计了一种具有更高凸度比的新型转子结构。本文以测量轴电感的新实验方法作为结尾,并构建了三个实验原型以验证理论和仿真结果。

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