Design and Analysis of a High Saliency Transverse Flux Machine with a Novel Rotor Structure for Traction Applications

Anik Chowdhury, Shuvajit Das, T. Tsuda, Naoto Saito, S. Saha, Y. Sozer
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引用次数: 4

Abstract

A high saliency Transverse Flux Machine (TFM) with a novel rotor structure for traction application is proposed in this paper. The proposed topology has a double stator and a single rotor. For the stator, E shaped core and the concentrated windings are used. An axial airgap is used in the proposed topology, which helps in improving the torque density of the machine. A novel rotor structure is proposed where the magnets are in an orthogonal direction to the rotation of the rotor and core materials are placed in between two adjacent rotor magnets. In the design process, key parameters of the machine are first locally and then, globally optimized to obtain the maximum output torque. Proposed machine’s performance is compared with the non-salient E-core TFM and the conventional flux concentrating E-core TFM. 3D Finite Element Analysis (FEA) is used to design and analyze the proposed machine. Validity and effectiveness of the proposed TFM topology are proved by the simulation results.
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一种新型转子结构的高显著性横向磁通机的设计与分析
提出了一种具有新型转子结构的高显著性横向磁通机(TFM)。所提出的拓扑结构具有双定子和单转子。定子采用E型铁芯和集中绕组。在提出的拓扑结构中使用了轴向气隙,这有助于提高机器的扭矩密度。提出了一种新型转子结构,磁体与转子的旋转方向成正交,磁芯材料置于相邻的两个转子磁体之间。在设计过程中,首先对机床的关键参数进行局部优化,然后进行全局优化,以获得最大的输出转矩。将所提出的电机性能与非显著型E-core TFM和传统的磁通集中型E-core TFM进行了比较。采用三维有限元分析(FEA)对该机床进行了设计和分析。仿真结果验证了所提TFM拓扑的有效性。
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