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首页> 外文期刊>IEEE Transactions on Magnetics >Design and Optimization of an External Rotor Ironless BLDCM Used in a Flywheel Energy Storage System
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Design and Optimization of an External Rotor Ironless BLDCM Used in a Flywheel Energy Storage System

机译:飞轮储能系统外转子无铁BLDCM的设计与优化

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摘要

Based on the application requirements of a flywheel energy storage system, an external rotor ironless brushless dc machine (BLDCM) is designed and optimized. The finite element method is adopted to investigate the external rotor ironless BLDCM. Performance improvement and loss minimization of the machine are achieved through optimizing the magnetic pole and the winding. The research results show that the copper loss of the machine can be reduced by appropriate selection of magnetic steel thickness even under the condition that the main parameter of the flywheel machine is set. Proper choice of the magnetic steel polar-arc coefficient is beneficial to reduce the flux leakage on the surface of the rotor. The width of air-gap flux density can be increased by reasonable selection of magnetic poles and magnetizing style. The flywheel energy storage machine prototype is fabricated based on the optimized design of the machine. The experiment results show that the test results coincide well with the design requirements.
机译:根据飞轮储能系统的应用需求,设计并优化了外转子无铁无刷直流电机(BLDCM)。采用有限元方法研究了外转子无铁BLDCM。通过优化磁极和绕组,可以提高机器的性能并降低其损耗。研究结果表明,即使在设置了飞轮机主要参数的情况下,通过适当地选择电磁钢厚度也可以减少机器的铜损。正确选择电磁钢的极弧系数有利于减少转子表面的磁通泄漏。合理选择磁极和充磁方式可以增加气隙磁通密度的宽度。飞轮储能机原型是根据该机的优化设计制造的。实验结果表明,测试结果与设计要求吻合良好。

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