首页> 外文会议>2011 IEEE International Electric Machines Drives Conference >Performance evaluation of grid connected wind energy conversion systems with five-phase modular permanent magnet synchronous generators having different slot and pole number combinations
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Performance evaluation of grid connected wind energy conversion systems with five-phase modular permanent magnet synchronous generators having different slot and pole number combinations

机译:具有不同槽数和极数组合的五相模块化永磁同步发电机并网风能转换系统的性能评估

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The performance of modular permanent magnet machines depends on proper selection of the pole and slot numbers which results in negligible coupling between phases. Preferred slot and pole number combinations eliminate the effect of low order harmonics in the stator MMF, thereby reducing vibration and stray loss. In this paper, three machines, with identical dimensions, are designed with different slots per phase per pole (SPP) ratios. The mathematical model of the machine based on modified winding function is presented. FEA is used to determine the flux linkage vector due to the permanent magnet. A simulation study is carried out to compare the performance of the three machine designs when used in wind energy conversion systems grid connected with hill climbing maximum power point tracking. The comparison is based on machine torque density, resulting ripple torque, and machine efficiency.
机译: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MMF中低阶谐波的影响,从而减少了振动和杂散损耗。在本文中,设计了三台尺寸相同的机器,每相每极(SPP)的比率具有不同的插槽。提出了基于修正绕组函数的电机数学模型。 FEA用于确定由于永磁体而产生的磁链矢量。进行了仿真研究,比较了三种机器设计在与爬山最大功率点跟踪连接的风能转换系统电网中使用时的性能。比较是基于机器转矩密度,产生的脉动转矩和机器效率。

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