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Investigation of skewing effects on the vibration reduction of three-phase switched reluctance motors

机译:偏斜对三相开关磁阻电动机减振效果的研究

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摘要

Switched reluctance motors (SRMs) are gaining in popularity because of their robustness, low cost, and excellent high-speed characteristics. However, they are known to cause vibration and noise primarily due to the radial pulsating force resulting from their double-saliency structure. This paper investigates the effect of skewing the stator and/or rotor on the vibration reduction of the three-phase SRMs by developing four 12/8-pole SRMs, including a conventional SRM, a skewed rotor-SRM (SR-SRM), a skewed stator-SRM (SS-SRM), and a skewed stator and rotor-SRM (SSR-SRM). The radial force distributed on the stator yoke under different skewing angles is extensively studied by the finite-element method and experimental tests on the four prototypes. The inductance and torque characteristics of the four motors are also compared, and a control strategy by modulating the turn-ON and turn-OFF angles for the SR-SRM and the SS-SRM are also presented. Furthermore, experimental results validate the numerical models and the effectiveness of the skewing in reducing the motor vibration. Test results also suggest that skewing the stator is more effective than skewing the rotor in the SRMs.
机译:开关磁阻电机(SRM)由于其坚固性,低成本和出色的高速特性而越来越受欢迎。然而,已知它们主要由于其双凸度结构所产生的径向脉动力而引起振动和噪声。本文研究了通过开发四个12/8极SRM(包括常规SRM,偏斜转子SRM(SR-SRM),偏斜定子SRM(SS-SRM),以及偏斜定子和转子SRM(SSR-SRM)。通过有限元方法和对四个原型的试验测试,广泛研究了不同偏转角下分布在定子轭上的径向力。还比较了这四个电动机的电感和转矩特性,并提出了通过调节SR-SRM和SS-SRM的接通和断开角度的控制策略。此外,实验结果验证了数值模型和偏斜在减少电动机振动方面的有效性。测试结果还表明,在SRM中,使定子倾斜比使转子倾斜更有效。

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