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Optimization and Evaluation of Torque-Sharing Functions for Torque Ripple Minimization in Switched Reluctance Motor Drives

机译:开关磁阻电机驱动器中转矩脉动最小化的转矩共享功能的优化和评估

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摘要

Two improved torque-sharing functions for implementing torque ripple minimization (TRM) control are presented in this paper. The proposed torque-sharing functions are dependent on the turn- on angle, overlap angle, and the expected torque. This study shows that for a given torque the turn-on angle and the overlap angle have significant effects upon speed range, maximum speed, copper loss, and efficiency. Hence, genetic algorithm is used to optimize the turn-on angle and the overlap angle at various expected torque demands operating under the proposed TRM control in order to maximize the speed range and minimize the copper loss. Furthermore, four torque-sharing functions are used to derive the optimized results. At the same time, a fast and accurate online approach to compute the optimal turn-on and overlap angles is proposed. Therefore, this paper provides a valuable method to improve the performances of switched reluctance motor drives operating under TRM control.
机译:本文介绍了两种改进的转矩共享功能,用于实现转矩脉动最小化(TRM)控制。提出的扭矩共享功能取决于开启角度,重叠角度和预期扭矩。这项研究表明,对于给定的转矩,接通角和重叠角对速度范围,最大速度,铜损和效率有重大影响。因此,遗传算法用于优化在所建议的TRM控制下运行的各种预期转矩要求下的开启角度和重叠角度,以使速度范围最大化并减少铜损。此外,使用四个扭矩共享功能来得出优化结果。同时,提出了一种快速准确的在线方法来计算最佳的导通角和重叠角。因此,本文提供了一种有价值的方法来改善在TRM控制下运行的开关磁阻电动机驱动器的性能。

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