Speed control of Induction Motor using new Sliding Mode Control technique

A. Ahmed, M. O. Ajangnay, Shamboul A. Mohamed, M. Dunnigan
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引用次数: 10

Abstract

Induction Motors have been used as the workhorse in the industry for a long time due to its easy build, high robustness, and generally satisfactory efficiency. However, they are significantly more difficult to control than DC motors. One of the problems which might cause unsuccessful attempts for designing a proper controller would be the time varying nature of parameters and variables which might be changed while working with the motion systems. One of the best suggested solutions to solve this problem would be the use of Sliding Mode Control (SMC). This paper presents the design of a new controller for a vector control induction motor drive that employs an outer loop speed controller using SMC. Several tests were performed to evaluate the performance of the new controller method, and two other sliding mode controller techniques. From the comparative simulation results, one can conclude that the new controller law provides high performance dynamic characteristics and is robust with regard to plant parameter variations.
基于新型滑模控制技术的异步电动机速度控制
感应电机由于其易于构建,高稳健性和总体令人满意的效率,长期以来一直被用作工业中的主力。然而,它们明显比直流电动机更难控制。其中一个可能导致设计一个适当控制器失败的问题是参数和变量的时变性质,这些参数和变量可能在运动系统工作时发生变化。最好的解决方案之一是使用滑模控制(SMC)来解决这个问题。本文设计了一种新的矢量控制异步电动机驱动器控制器,该控制器采用了SMC外环速度控制器。进行了几个测试来评估新控制器方法和其他两种滑模控制器技术的性能。对比仿真结果表明,该控制律具有较高的动态特性,且对对象参数变化具有较强的鲁棒性。
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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