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Pole-Shape Optimization of a Switched-Reluctance Motor for Torque Ripple Reduction

机译:降低磁阻纹波的开关磁阻电机的极形优化

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Switched-reluctance motors produce acoustic noise and vibration caused by torque ripple. Applications of these motors where silent operation is desirable, such as in home appliances, has, thus, been limited. This paper describes a proposal for a new stator pole face having a nonuniform air-gap and a pole shoe attached to the lateral face of the rotor pole. These additions minimize the undesired torque ripple. The effects of each design parameter were investigated using a time-stepping finite-element method. The parameters were optimized by utilizing response surface method (RSM) combined with (1 $+$ 1) evolution strategy. It has been shown, through numerical tests, that the optimized shape gives higher average torque and drastically reduced torque ripple.
机译:开关磁阻电动机会产生由转矩脉动引起的噪声和振动。因此,限制了这些需要静音操作的电动机的应用,例如在家用电器中的应用。本文介绍了一种新的定子极面的建议,该定子极面具有不均匀的气隙,并且极靴连接到转子极的侧面。这些增加使不希望的转矩波动最小化。使用时步有限元方法研究了每个设计参数的影响。通过利用响应面法(RSM)结合(1 $ + 1)进化策略来优化参数。通过数值测试表明,优化的形状可提供更高的平均扭矩并大大减少了扭矩波动。

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