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A Generalized Equivalent Magnetic Network Modeling Method for Vehicular Dual-Permanent-Magnet Vernier Machines

机译:车载双永磁游标机的广义等效磁网络建模方法

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摘要

This paper proposes a new equivalent magnetic network (EMN) model for vehicular dual-permanent-magnet vernier (DPMV) machines by applying a generalized modeling method. First, the magnetic circuit method and the meshing method are combined together to improve the modeling efficiency of the DPMV machine. The magnetic circuit method is used to generate conventional lumped parameter permeances to shorten time consumption, whereas the mesh method is utilized in disordered magnetic fields to obtain high precision. Second, a meshing solution for oblique region is proposed to enhance modeling flexibility. Moreover, the flux distributions in meshes are represented without magnetic field pre-delineation, which enables its utilization as a self-adaptive reluctance network model in design optimization. Finally, the proposed EMN model is used to predict the performance of the DPMV machine, considering leakage magnetic flux, local iron saturation, and magnetic field modulation effect simultaneously. Meanwhile, the effectiveness of the proposed EMN model is verified by comparison with finite-element analysis and experimental tests.
机译:本文提出了一种通用的建模方法,为车载双永磁游标(DPMV)机器提供了一个新的等效磁网络(EMN)模型。首先,将磁路方法和啮合方法结合在一起以提高DPMV机器的建模效率。磁路方法用于生成常规的集总参数磁导率以缩短时间消耗,而网格方法用于无序磁场中以获得高精度。其次,提出了一种倾斜区域的网格划分解决方案,以提高建模的灵活性。此外,网格中的通量分布在没有磁场预描绘的情况下得以表示,这使其可以在设计优化中用作自适应磁阻网络模型。最后,将提出的EMN模型用于预测DPMV机器的性能,同时考虑泄漏磁通量,局部铁饱和度和磁场调制效果。同时,通过与有限元分析和实验测试的比较,验证了所提方法的有效性。

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