A Novel Average Torque Control of Switched Reluctance Motor Based on Flux–Current Locus Control

Jiayi Fan, Yongkeun Lee
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引用次数: 6

Abstract

This article develops a novel average torque control (ATC) scheme for switched reluctance (SR) motor on the basis of a brand-new microstep flux–current locus controller. The proposed ATC is based on the calculation of the average torque from the converted mechanical energy that can be illustrated as an enclosed area in a flux–current plane. It has the superior advantage that it is able to control the average torque over any arbitrary small-angle intervals, whereas the conventional ATC can control only the average torque for a whole stroke. In order to realize the proposed ATC, a flux–current locus controller, which consists of a hybrid flux controller and current controller as well as involve the microstep process, is introduced in this article. The flux–current locus of the energy conversion loop is controlled for the first time in the literature. With the locus controller, it is possible to achieve a better energy conversion ratio and the ATC. In order to verify both the proposed locus control method and the ATC for SR motor, detailed simulation results and discussion are provided.
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基于磁链轨迹控制的开关磁阻电机平均转矩控制
本文在一种新型微步磁流变轨迹控制器的基础上,提出了一种开关磁阻电机的平均转矩控制方案。提出的ATC是基于计算从转换的机械能平均转矩,可以表示为一个封闭的区域在一个磁通电流平面。它的优势在于能够控制任意小角度段的平均扭矩,而传统的ATC只能控制整个冲程的平均扭矩。为了实现所提出的ATC,本文介绍了一种由磁链控制器和电流控制器混合组成的涉及微步过程的磁链-电流轨迹控制器。在文献中首次对能量转换回路的磁流轨迹进行了控制。使用轨迹控制器,可以实现更好的能量转化率和ATC。为了验证所提出的轨迹控制方法和SR电机的ATC,给出了详细的仿真结果和讨论。
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期刊介绍: The Canadian Journal of Electrical and Computer Engineering (ISSN-0840-8688), issued quarterly, has been publishing high-quality refereed scientific papers in all areas of electrical and computer engineering since 1976
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