高速开关磁阻电机与常规和环形绕组的比较

Jianing Lin, P. Suntharalingam, N. Schofield, A. Emadi
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引用次数: 4

摘要

本文介绍了50000转/分6/4开关磁阻电动机的设计,重点对常规绕组和环形绕组进行了比较研究。本文比较了四种不同的机器,第一种是传统的SRM,另外三种是环形绕线机。第一个环形SRM (TSRM1)采用传统的非对称转换和与传统SRM (CSRM)相同的切换顺序。因此,观察到等效的磁性能。第二个环形SRM (TSRM2)引入了一个12开关转换器拓扑结构。通过适当的线圈连接和开关顺序,所有线圈都是活跃的,同时有助于磁通和转矩的产生。分析表明,在铜损耗相同的情况下,TSRM2在额定转速下的输出转矩和功率比CSRM高50%,而TSRM1的输出转矩仅为CSRM的一半。第三个环形SRM是一个调整大小的TSRM2,它具有与CSRM相同的包络尺寸(相同的体积比较)。结果表明,环形绕线在绕线制造过程中可以获得更高的填充系数,具有较好的竞争优势。
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Comparison of high-speed switched reluctance machines with conventional and toroidal windings
This paper presents designs of 50,000 rpm 6/4 switched reluctance motors (SRM's) with a focus of the comparative study on conventional and toroidal windings. There are four different machines compared in this paper, while the first is a conventional SRM, and the other three are toroidal winding machines. The first toroidal SRM (TSRM1) employs the conventional asymmetric convert and the same switching sequence as conventional SRM (CSRM). Therefore, an equivalent magnetic performance is observed. The second toroidal SRM (TSRM2) introduces a 12-switch converter topology. With a proper coil connection and switching sequence, all the coils are active and contribute to the flux and torque generation at the same time. The analysis shows that for the same amount of copper losses, TSRM2 yields a 50% higher output torque and power at rated speed than CSRM, while TSRM1 only generates half the torque of CSRM. The third toroidal SRM is a resized TSRM2, which is presented with the same envelope dimension of CSRM (same volumetric comparison). The comparison shows it's competitive to CSRM, especially as toroidal-winding can achieve higher filling factor during the manufacture process of winding.
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