变结构自适应模型跟随控制的智能切换面

S. Thomas, H. Reddy
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摘要

本文将遗传算法应用于具有未建模动力学/参数变化的高阶系统的变结构自适应模型跟踪控制器的智能切换面设计。传统的插极法设计开关表面的方法往往导致控制信号的大值。本文提出了一种计算效率高的智能开关曲面获取方法。所提出的方法利用气体来演化一个开关面,以确保当变化/不确定性作用于系统时,极点的破坏最小。如果不能保证极点的最小破坏,则需要更高的控制信号来维持滑模运动。将所提出的方法应用于一个实际系统,即柔性单连杆机械臂,并与传统设计方法的结果进行了比较。对比表明了所提方法的有效性
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Intelligent Switching Surface for Variable Structure Adaptive Model Following Control
This paper presents the application of genetic algorithms (GAs) to the design of an intelligent switching surface for variable structure adaptive model following controller for higher order systems with unmodelled dynamics/parameter variations. The conventional approach for the design of switching surface by pole placement method often lead to large value of control signals. A method for obtaining an intelligent switching surface in a computationally efficient manner is proposed in this paper. The proposed method make use of GAs to evolve a switching surface which ensures minimum disruption of the poles when variations/uncertainties act on the system. If minimum disruption of the poles is not ensured, higher control signal will be required to maintain sliding mode motion. The proposed methodology is applied to a practical system namely a flexible one-link manipulator and the results obtained are compared to the results obtained by applying the conventional design. The comparison reveals the efficacy of the proposed method
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