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Study of the Effect of a Shielding Cylinder on the Torque in a Permanent-Magnet Synchronous Machine Considering Two Torque-Producing Mechanisms

机译:考虑两种转矩产生机理的永磁同步电动机中屏蔽筒对转矩的影响研究

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摘要

Despite an ever-growing interest, a lot of questions related to the design and operation of high-speed permanent-magnet synchronous machines remain unanswered. One aspect of such high-speed machines that requires special attention is the effect of the shielding cylinder (SC), a conductive sleeve that is wrapped around the magnets and which' goal is to reduce the rotor losses and/or retain the magnets. Therefore, this paper aims at theoretically studying the effect of the SC on the torque production. The study is performed using a 2-D analytical subdomain model that accounts for slotting and the eddy-current reaction field. The torque is divided in two components, the classical torque due to interaction between the magnets and the stator currents and the torque due to interaction with the eddy currents in the SC. This approach is unique and results in a better insight in the machine's physics.
机译:尽管人们的兴趣日益增长,但与高速永磁同步电机的设计和操作有关的许多问题仍未得到解答。这种高速机器需要特别注意的一个方面是屏蔽圆筒(SC)的作用,它是包裹在磁体周围的导电套,其目的是减少转子损耗和/或保留磁体。因此,本文旨在从理论上研究SC对转矩产生的影响。该研究是使用二维分析子域模型进行的,该模型考虑了开槽和涡流反应场。转矩分为两个分量,一个是由于磁铁和定子电流之间的相互作用而产生的经典转矩,另一个是由于与SC中的涡流相互作用而产生的转矩。这种方法是独特的,可以更好地了解机器的物理原理。

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