On the control of switched reluctance motors

G. Espinosa-Pérez, P. Maya-Ortíz, M. Velasco-Villa, H. Sira-Ramírez
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引用次数: 0

Abstract

In this paper, the control of switched reluctance motors is approached from a passivity-based control perspective. The proposed controller solves the torque/speed/position tracking problem by exploiting the passivity properties of the machine. The methodology design considers the feedback decomposition of the motor model into one electrical and one mechanical passive systems and is divided into the following three steps: control of the electrical sub-system to achieve current tracking, definition of the desired current behaviour to assure torque tracking and design of a speed/position control loop. The contribution of the paper is threefold: the controller design is developed using energy-dissipation ideas; the mathematical formalization of the current engineering practice of controlling this kind of machines with a cascade approach; and the establishment of an extension to previously reported passivity-based controllers for electric machines in the sense that in this case Blondel-Park transformability properties are not required.
开关磁阻电动机的控制
本文从无源控制的角度探讨了开关磁阻电机的控制问题。该控制器利用机器的无源特性,解决了转矩/速度/位置跟踪问题。该方法设计考虑了电机模型的反馈分解为一个电气和一个机械被动系统,并分为以下三个步骤:控制电气子系统以实现电流跟踪,定义所需的电流行为以确保转矩跟踪和设计速度/位置控制回路。本文的贡献体现在三个方面:采用能量耗散思想开发了控制器设计;用级联方法控制这类机器的当前工程实践的数学形式化;以及对先前报道的电机无源控制器的扩展,在这种情况下,不需要Blondel-Park可变特性。
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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