Analysis and Design of a Permanent-Magnet Outer-Rotor Synchronous Generator for a Direct-Drive Vertical-Axis Wind Turbine

Authors

  • A. Darijani the Department of Electrical Engineering, Faculty of Engineering, the University of Isfahan
  • A. Kiyoumarsi the Department of Electrical Engineering, Faculty of Engineering, the University of Isfahan
  • B. Mirzaeian Dehkordi the Department of Electrical Engineering, Faculty of Engineering, the University of Isfahan
  • H. A. Lari the Department of Electrical Engineering, Faculty of Engineering, the University of Isfahan
  • S. M. Madani the Department of Electrical Engineering, Faculty of Engineering, the University of Isfahan
Abstract:

In Permanent-Magnet Synchronous Generators (PMSGs) the reduction of cogging torque is one of the most important problems in their performance and evaluation. In this paper, at first, a direct-drive vertical-axis wind turbine is chosen. According to its nominal value operational point, necessary parameters for the generator is extracted. Due to an analytical method, four generators with different pole-slot combinations are designed. Average torque, torque ripple and cogging torque are evaluated based on finite element method. The combination with best performance is chosen and with the analysis of variation of effective parameters on cogging torque, and introducing a useful method, an improved design of the PMSG with lowest cogging torque and maximum average torque is obtained. The results show a proper performance and a correctness of the proposed method.

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Journal title

volume 10  issue 4

pages  324- 332

publication date 2014-12

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