首页> 外文会议>EVER 2013;International Conference and Exhibition on Ecological Vehicles and Renewable Energies >Optimal Slot/Pole and Flux-Barrier Layer Number Combinations for Synchronous Reluctance Machines
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Optimal Slot/Pole and Flux-Barrier Layer Number Combinations for Synchronous Reluctance Machines

机译:同步磁阻机的最佳插槽/杆和磁通屏障层数组合

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AC synchronous reluctance machine (SynRM) or permanent magnet assisted synchronous reluctance machine presently receives a great deal of interest, since there is less or even no rare earth permanent magnet in the rotor. Most of SynRM machines employ a stator that is originally designed for a standard squirrel cage induction motor for a similar output rating and application, or the SynRM machine with 24-slot, 4- pole are often directly chosen for investigation in most of the available literature. Therefore, it is necessary to investigate the influence of stator and rotor pole number combinations together with the flux-barrier layers number on the performance of SynRM machine with emphasis on output torque capability and torque ripple. In order to investigate the impact of slot/pole number combinations on performance of SynRM machine, the same ratio of rotor insulation width to the rotor iron width has been used for all the slot and pole number combinations machines. In addition, the effect of flux-barrier layer number of this machine on average torque and torque ripple has also been investigated.
机译:AC同步磁阻机(SYNRM)或永磁辅助同步磁阻机目前接受了大量兴趣,因为转子中没有稀土永磁体。大多数SynrM机器采用定子,最初设计用于标准的鼠笼式感应电动机,用于类似的输出额定值和应用,或者使用24插槽的Synrm机器,通常直接选择在大多数可用文献中进行调查。因此,有必要研究定子和转子数量组合的影响与在Synrm机器的性能下的磁通阻挡层数量,重点是输出扭矩能力和扭矩脉动。为了研究槽/极数组合对Synrm机器性能的影响,所有槽和极数组合机器都使用了与转子铁宽度相同的转子绝缘宽比。此外,还研究了该机器的磁通阻隔层数对平均扭矩和扭矩脉动的影响。

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