Robust control of a MEMS optical switch using fuzzy sliding mode

M. Bahrami, A. Imani, A. Ghanbari, B. Ebrahimi
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引用次数: 1

Abstract

In this Paper, in order to improve the performance of sliding mode controller, a fuzzy logic sliding mode controller is proposed. The slope of sliding surface is changed based on error and its derivative by a fuzzy logic and reached to the predetermined slope. This decreases reaching phase and speeds up system's response, and with increasing the slope of the sliding surface, final tracking error decreases. For eliminating the chattering phenomenon, instead of using saturation function, a fuzzy logic algorithm based on surface function is designed. So chattering problem as a result of uncertainty and disturbance is eliminated. In both fuzzy logics, Mamdani-type fuzzy inference is used. Proposed controller is applied to control of a nonlinear MEMS optical switch which is subjected to disturbance. The performance of this controller is compared to sliding mode controller which has same parameters and simulation results indicate the superior performance of the proposed controller.
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基于模糊滑模的MEMS光开关鲁棒控制
为了提高滑模控制器的性能,本文提出了一种模糊逻辑滑模控制器。利用模糊逻辑,根据误差及其导数改变滑动面的斜率,使其达到预定的斜率。减小了到达相位,加快了系统响应速度,并且随着滑动面坡度的增大,最终跟踪误差减小。为了消除抖振现象,设计了一种基于曲面函数的模糊逻辑算法来代替饱和函数。从而消除了不确定性和干扰所引起的抖振问题。在这两种模糊逻辑中,都使用了mamdani型模糊推理。将该控制器应用于受干扰的非线性MEMS光开关的控制。将该控制器的性能与具有相同参数的滑模控制器进行了比较,仿真结果表明了该控制器的优越性能。
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