正弦波电流供电的短间距和全间距srm的比较研究

Xi-yun Ma, G. Li, G. Jewell, Z. Zhu
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引用次数: 4

摘要

本文全面研究了三相、12槽和8极开关磁阻电机的不同绕组结构,如双层/单层、短/全斜绕组。采用二维有限元法对传统开关磁阻电动机和相互耦合、双层绕组开关磁阻电动机以及全倾斜开关磁阻电动机和单层绕组开关磁阻电动机进行了自电感、互感和有载转矩的比较。数值计算结果表明,在不严重饱和的情况下,全螺距开关磁阻电机(FPSRM)的电感随转子位置的变化最大,从而产生最大的有载转矩。然而,它的端绕组明显变长,将导致更高的铜损耗。这可能最终危及其扭矩与铜损耗性能。为了在保持短端绕组和低铜损耗的同时提高扭矩产量,可以采用两个短间距单层绕组srm,它们的绕组结构与传统的和相互耦合的双层绕组srm相似。研究发现,在铜损耗相同且不存在严重磁饱和的情况下,单层和双层相互耦合的srm都能产生比传统srm更高的有载转矩。此外,单层相互耦合的SRM可以实现与FPSRM相当的抗铜损耗性能,但端绕组要短得多,体积也更小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative study of short-pitched and fully-pitched SRMs supplied by sine wave currents
This paper comprehensively investigates 3-phase, 12-slot, and 8-pole switched reluctance machines (SRMs) with different winding configurations, e.g. double/single layer, short/fully pitched. Comparisons in terms of self- and mutual inductances, and on-load torques have been carried out using 2-D finite element method (FEM) for conventional and mutually coupled, double layer winding switched reluctance motors (SRMs) as well as fully-pitched and single layer winding SRMs. The numerical results have shown that the fully pitched switched reluctance machine (FPSRM) has the highest inductance variation against rotor position and hence produces the highest on-load torque if the machine is not heavily saturated. However, its significant longer end-winding will leads to higher copper loss. This can eventually jeopardize its torque vs copper loss performance. To boost torque production while maintaining short end-winding and hence low level of copper loss, two short-pitched, single layer winding SRMs with similar winding configurations to those of conventional and mutual coupled, double layer winding SRMs can be employed. It is found that for the same copper loss and without heavy magnetic saturation, both single and double layer mutually coupled SRMs can produce higher on-load torque compared to their conventional counterparts. Moreover, single layer mutually coupled SRM can achieve comparable torque against copper loss performance to the FPSRM but with much shorter end-winding and also smaller volume.
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