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2D analytical torque study of slotted high-speed PMSMs considering pole pairs, slots per pole per phase and coil throw

机译:考虑极对,每相每极极隙和线圈投掷量的开槽高速PMSM的2D分析转矩研究

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Recently the interest in permanent-magnet synchronous machines (PMSMs) operating at high speed has grown. However, a lot of design and operation questions remain unanswered. This work aims at studying the effect of the number of pole pairs, the number of slots per pole per phase and the coil throw on the torque and the torque ripple in high-speed PMSMs. High-speed machines are often equipped with a shielding cylinder, i.e. a conductive sleeve wrapped around the magnets. The study is therefore performed using a 2D analytical subdomain model that accounts for slotting and the eddy-current reaction field. The classical torque component and the torque due to interaction with the eddy-currents in the shielding cylinder are regarded separately.
机译:最近,人们对高速运行的永磁同步电机(PMSM)的兴趣不断增长。但是,许多设计和操作问题仍未得到解答。这项工作旨在研究高速永磁同步电机中极对数,每相每极每槽的槽数以及线圈对转矩和转矩脉动的影响。高速机器通常配备有屏蔽圆筒,即包裹在磁体周围的导电套管。因此,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。分别考虑经典转矩分量和由于与屏蔽筒中的涡流相互作用而产生的转矩。

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