Correlative angles switching technique for switched reluctance motor drive systems

S. A. AbouHashesh, M. El-Nemr, E. Rashad
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引用次数: 3

Abstract

Switched reluctance machines with its uncomplicated structure, low cost, high reliability and fault tolerance, is struggling to gain higher market share almost in all electric machinery utilities. Its simplicity encouraged researchers to apply a wide variety of classic and intelligent control techniques. These techniques are used to control the speed and torque via appropriate determination of switching-on and switching-off angles, usually associated with applying chopping in between. However, the nonlinear nature of the machine forced the utilization of sophisticated models to assist speed and torque controllers to select proper switching angles. Especially at high speeds, the uncontrolled current during freewheeling may produce negative torque and consequently torque ripples. Considerable research efforts have been performed to reduce such ripples. In this paper, a new switching technique is proposed. The technique aims to deal with the current waveform during excitation and freewheeling as a whole via correlating the switching-on, switching-off and current-end angles using simple calculations. The restrictions and limitations imposed on each switching angle to mollify operation conditions are investigated. An extensive simulated study is carried out to validate the reliability of the proposed technique. The results show the effectiveness of the proposed control method for practical high-speed applications.
开关磁阻电机驱动系统的相关角开关技术
开关磁阻电机以其结构简单、成本低、可靠性高、容错能力强等优点,在几乎所有的电机领域都在努力争取更高的市场份额。它的简单性鼓励研究人员应用各种经典和智能控制技术。这些技术是用来控制速度和扭矩,通过适当的确定开关和开关的角度,通常与应用在两者之间的斩波。然而,机器的非线性性质迫使使用复杂的模型来帮助速度和转矩控制器选择合适的开关角度。特别是在高速下,自由旋转过程中不受控制的电流可能产生负转矩,从而产生转矩波纹。为了减少这种波动,已经进行了大量的研究工作。本文提出了一种新的开关技术。该技术旨在通过简单的计算将接通、关闭和电流端角度关联起来,从而处理整个励磁和自由转动期间的电流波形。对每个开关角施加的限制和限制进行了研究,以缓和操作条件。为了验证所提出的技术的可靠性,进行了广泛的仿真研究。结果表明,该控制方法在实际高速应用中是有效的。
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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