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Finite element analysis of a modular brushless wound rotor synchronous machine

机译:模块化无刷绕线转子同步电机的有限元分析

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This study presents a comparative study of different modular brushless wound rotor synchronous machines (MB-WRSM) using non-overlapping fractional slot double-layer concentrated windings. The goal of the study is to highlight the structure which offers the best fault-tolerance capability and the highest output performance. The fundamental winding factor is calculated by using the method based on voltage phasors as a significant criterion to select the preferred numbers of phases, stator slots, and poles. With the limited number of poles for a small machine (3.67 kW/7000 rpm), 15 different machines for different phase/slot/pole combinations are analysed using two- dimensional (2D) finite element method and compared according to three criteria: torque density, torque ripple, and machine efficiency. The seven-phase/seven-slot/six-pole machine is chosen with the best compromise of high torque density, small torque ripple (3.89%), and high nominal efficiency (95%). This machine is then compared with a reference design surface-mounted permanent magnet synchronous machine (SM-PMSM). The simulation results are discussed and demonstrate that the MB-WRSM presents interesting performance features, such as extended field weakening range, with overall performance closely matching that of an equivalent SM-PMSM.
机译:这项研究提出了使用不重叠的分数槽双层集中绕组的不同模块化无刷绕线转子同步电机(MB-WRSM)的比较研究。该研究的目的是突出提供最佳容错能力和最高输出性能的结构。基本绕组系数是通过使用基于电压相量的方法作为选择相,定子槽和极的首选数量的重要标准来计算的。对于一台小型电机(3.67 kW / 7000 rpm)的极数有限,使用二维(2D)有限元方法分析了15种不同相/槽/极组合的不同电机,并根据以下三个标准进行了比较:转矩密度,转矩脉动和机器效率。选择七相/七槽/六极电机时要兼顾高转矩密度,小转矩波动(3.89%)和高额定效率(95%)。然后将该机器与参考设计的表面安装式永磁同步电动机(SM-PMSM)进行比较。对仿真结果进行了讨论并证明,MB-WRSM表现出有趣的性能特征,例如扩展的弱磁场范围,总体性能与等效SM-PMSM的性能非常接近。

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