首页> 外文会议>Vehicle Power and Propulsion Conference, 2008 IEEE >Comparison of alternate analytical models for predicting cogging torque in surface-mounted permanent magnet machines
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Comparison of alternate analytical models for predicting cogging torque in surface-mounted permanent magnet machines

机译:预测表面安装式永磁电机中齿槽转矩的替代分析模型的比较

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Permanent magnet brushless machines exhibit high efficiency and torque density, and have already been employed in hybrid electric vehicles. However, one of their disadvantages is the inherent cogging torque, which is a kind of torque ripple and always desirable to minimize. Six analytical models for cogging torque prediction are presented and compared in this paper. These analytical models are progressively refined and differ in methods for calculating the permeance due to stator slotting (i.e. with/without considering the slot leakage), the airgap field distribution due to permanent magnets (i.e. with/without considering the inter-pole leakage and/or curvature effect), and the cogging torque (based on the energy method or the net lateral force acting on the stator teeth). Developed analytical models are used to predict the cogging torque waveforms, the optimal magnet pole-arc to pole-pitch ratio and the optimal slot opening in three machines having different combinations of slot number and pole number, viz. 18/24, 9/8, and 24/16, respectively, and are extensively validated by the finite element analyses. It shows that accounting for the slot leakage and/or magnet interpole leakage can significantly improve the accuracy of cogging torque prediction, while the method for predicting the cogging torque based on the calculation of net lateral force acting on the stator teeth exhibits a higher accuracy than that based on the energy method.
机译:永磁无刷电机显示出高效率和扭矩密度,并且已经在混合动力电动车辆中使用。但是,它们的缺点之一是固有的齿槽转矩,这是一种转矩波动,总是希望将其最小化。提出并比较了用于齿槽转矩预测的六个分析模型。这些分析模型逐步完善,并且在计算因定子开槽(即有/没有考虑缝隙泄漏)而引起的磁导率,由于永磁体引起的气隙场分布(即有/没有考虑极间泄漏和/或或曲率效应),以及齿槽转矩(基于能量方法或作用在定子齿上的净侧向力)。使用已开发的分析模型来预测齿槽转矩波形,最佳磁极-弧-极-螺距比以及具有槽号和极数的不同组合的三台机器的最佳槽口,即。分别为18 / 24、9 / 8和24/16,并且已通过有限元分析进行了广泛验证。结果表明,考虑缝隙泄漏和/或磁体极间泄漏可以显着提高齿槽转矩预测的准确性,而基于作用在定子齿上的净侧向力的齿槽转矩预测方法的精度要高于基于能量法的

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