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首页> 外文期刊>Modelling and simulation in engineering >Five-Phase Modular External Rotor PM Machines with Different Rotor Poles: A Comparative Simulation Study
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Five-Phase Modular External Rotor PM Machines with Different Rotor Poles: A Comparative Simulation Study

机译:具有不同转子极的五相模块化外转子永磁电机:对比仿真研究

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The performance of fault-tolerant modular permanent magnet machines depends on the proper selection of the pole and slot numbers which result in negligible coupling between phases. The preferred slot and pole number combinations eliminate the effect of low-order harmonics in the stator magnetomotive force and thereby the vibration and stray loss are reduced. In this paper, three external rotor machines with identical machine dimensions are designed with different slots per phase per pole ratios. A simulation study is carried out using finite element analysis to compare the performance of the three machines in terms of machine torque density, ripple torque, core loss, and machine efficiency. A mathematical model based on the conventional-phase-model approach is also used for the comparative study. The simulation study is extended to depict machine performance under fault conditions.
机译:容错模块化永磁电机的性能取决于极数和槽数的正确选择,从而导致相之间的耦合可忽略不计。优选的槽和极数组合消除了定子磁通势中的低次谐波的影响,从而减小了振动和杂散损耗。在本文中,设计了三台具有相同电机尺寸的外转子电机,每相每极比率具有不同的插槽。使用有限元分析进行了仿真研究,以比较这三台机器在机器转矩密度,脉动转矩,铁心损耗和机器效率方面的性能。比较研究还使用了基于常规相模型方法的数学模型。仿真研究已扩展到描绘故障条件下的机器性能。

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