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首页> 外文期刊>Industry Applications, IEEE Transactions on >Multi-Objective Tradeoffs in the Design Optimization of a Brushless Permanent-Magnet Machine With Fractional-Slot Concentrated Windings
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Multi-Objective Tradeoffs in the Design Optimization of a Brushless Permanent-Magnet Machine With Fractional-Slot Concentrated Windings

机译:分数槽集中绕组无刷永磁电机设计优化中的多目标权衡

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In this paper, a robust parametric model of a brushless permanent magnet machine with fractional-slot concentrated windings, which was developed for automated design optimization is presented. A computationally efficient finite-element analysis method was employed to estimate the dq-axes inductances, the induced voltage and torque ripple waveforms, and losses of the machine. A method for minimum effort calculation of the torque angle corresponding to the maximum torque per ampere load condition was developed. A differential evolution algorithm was implemented for the global design optimization with two concurrent objectives of minimum losses and minimum material cost. An engineering decision process based on the Pareto-optimal front for 3,500 candidate designs is presented together with discussions on the tradeoffs between cost and performance. One optimal design was finally selected, prototyped and successfully tested.
机译:在本文中,提出了具有分数槽集中绕组的无刷永磁电机的鲁棒参数模型,该模型是为自动设计优化而开发的。计算有效的有限元分析方法用于估算dq轴电感,感应电压和转矩脉动波形以及电机损耗。开发了一种用于最小化计算与每安培负载条件下的最大转矩对应的转矩角的方法。为全局设计优化实现了差分进化算法,同时实现了两个目标:最小损失和最小材料成本。提出了基于帕累托最优阵线的3,500个候选设计的工程决策过程,并讨论了成本与性能之间的取舍。最终选择了一种最佳设计,进行了原型设计并成功进行了测试。

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