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A Novel Mesh-Based Equivalent Magnetic Network for Performance Analysis and Optimal Design of Permanent Magnet Machines

机译:一种新型的基于网格的等效磁网络,用于永磁电机的性能分析和优化设计

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摘要

This paper proposes a novel mesh-based equivalent magnetic network (EMN) model for performance analysis and optimal design of permanent magnet (PM) machines. The key contribution of the EMN model is that a generalized air-gap model solution is proposed by considering the machine motion of PM machines. Meanwhile, a modular modeling method is presented, and then the optimal design of PM machines can be investigated without repetitive programming and modeling. Two kinds of mesh elements are comprehensively utilized in the EMN model, and a hybrid rotor PM (HRPM) machine with interior PM and surface PM configuration is selected as an example to illustrate the development processes of EMN model. Meanwhile, the electromagnetic characteristics of HRPM machine are calculated by the proposed EMN model, such as back electromotive force, air-gap flux density distribution, and average torque. Finally, the accuracy and effectiveness of the proposed EMN model are verified through comparisons with finite element analysis and experimental tests.
机译:本文提出了一种新颖的基于网格的等效磁网络(EMN)模型,用于永磁电机(PM)的性能分析和优化设计。 EMN模型的关键贡献在于,通过考虑PM机器的机器运动提出了广义的气隙模型解决方案。同时提出了一种模块化的建模方法,无需重复编程和建模就可以研究永磁电机的优化设计。 EMN模型中综合利用了两种网格元素,并以具有内部PM和表面PM构造的混合转子PM(HRPM)机器为例来说明EMN模型的开发过程。同时,通过提出的EMN模型计算出HRPM电机的电磁特性,如反电动势,气隙磁通密度分布和平均转矩。最后,通过与有限元分析和实验测试的比较,验证了所提EMN模型的准确性和有效性。

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