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Analytical Modeling and Optimization of Dual-Layer Segmented Halbach Permanent-Magnet Machines

机译:双层分段Halbach永磁机的分析建模与优化

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摘要

In this article, two kinds of dual-layer segmented Halbach arrays have been proposed for permanent-magnet (PM) brushless machines. The analytical expressions of magnetic fields due to the inner-/outer-layer Halbach magnets have been separately obtained. For the maximal flux density in the air gap, the optimal magnet segment radian ratios or magnetization angles for each dual-layer Halbach array have been analytically determined separately. The induced back electromotive force and electromagnetic torque have been analytically obtained. The prediction results show that the optimized electromagnetic performances for each double-layer segmented Halbach array with different slot and pole combinations are better than those for the corresponding single-layer one. The proposed analytical model can also be applied for optimizing the multi-layer segmented Halbach array. The analytical prediction results of a PM machine with the double-layer segmented Halbach array have been compared with those obtained by a finite-element method.
机译:在本文中,已经提出了两种双层分段升降机阵列,用于永磁体(PM)无刷机器。已经单独地获得了由内/外层哈巴驰磁体引起的磁场的分析表达。对于气隙中的最大磁通密度,已经分别分析地确定了每个双层哈巴赫阵列的最佳磁体段弧度比或磁化角。已经分析了诱导的背部电动势和电磁扭矩。预测结果表明,具有不同槽和极组合的每个双层分段哈巴赫阵列的优化电磁性能优于相应的单层α的哈巴赫阵列的优化电磁性能。所提出的分析模型也可以应用于优化多层分段的Halbach阵列。将PM机的分析预测结果与通过有限元方法获得的那些进行了比较了双层分段哈巴肖阵列的分析结果。

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