Modeling simulation and performance analysis of switched reluctance motor operating with optimum value of fixed turn-on and turn-off switching angles

H. E. Akhter, V. Sharma, A. Chandra, K. Al-haddad
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引用次数: 9

Abstract

The value of turn-on and turn off angles are important factors in developing positive or negative, high or low electromagnetic torque in switched reluctance motor (SRM) and lead to stable or unstable operation of the drive. This paper presents the performance of a 4 kW 8/6-pole configuration SRM drive through modeling and simulation for optimum and fixed value of switching-on and -off angles. Normally, these switching angles depend upon the motor speed and are varied with acceleration. In this paper, the analysis is conducted to arrive at an optimum pair of switching angle for full-load starting and stable operation of the drive. The simulated performance of SRM drive system is presented to analyze the effect of switching angles on transient and steady state performance of the drive in terms of speed, current and torque response. The merit of fixed switching angle control schemes is highlighted.
固定通断角最优值下开关磁阻电机的建模仿真与性能分析
导通角和关断角的大小是决定开关磁阻电机产生正、负、高、低电磁转矩的重要因素,也是决定开关磁阻电机运行稳定或不稳定的重要因素。本文通过对4 kW 8/6极配置SRM驱动器的最佳开断角和固定开断角的建模和仿真,对其性能进行了分析。通常,这些开关角度取决于电机速度,并随加速度而变化。本文进行了分析,得出了驱动满载起动和稳定运行的最佳开关角对。仿真了SRM驱动系统的性能,分析了开关角度对驱动系统暂态和稳态性能的影响,包括转速、电流和转矩响应。强调了固定开关角控制方案的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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