Control of AMIRA’s ball and beam system via improved fuzzy feedback linearization approach |
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Authors: | Ting-Li Chien Chung-Cheng Chen Ming-Chun Tsai Ying-Chen Chen |
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Affiliation: | 1. Department of Electronic Engineering, Wufeng Institute of Technology, 117, Sec., Chian-Kuo Road, Ming-Hsiung, Chiayi City 621, Taiwan, ROC;2. Department of Electrical Engineering, National Chiayi University, 300, Syuefu Road, Chiayi City 600, Taiwan, ROC;3. Department of Materials Science and Engineering, National Chiao Tung University, 1001, Ta Hsueh Road, Hsinchu 300, Taiwan, ROC |
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Abstract: | ![]() This paper first studies the tracking and almost disturbance decoupling problem of nonlinear AMIRA’s ball and beam system based on the feedback linearization approach and fuzzy logic control. The main contribution of this study is to construct a controller, under appropriate conditions, such that the resulting closed-loop system is valid for any initial condition and bounded tracking signal with the following characteristics: input-to-state stability with respect to disturbance inputs and almost disturbance decoupling, i.e., the influence of disturbances on the L2 norm of the output tracking error can be arbitrarily attenuated by changing some adjustable parameters. One example, which cannot be solved by the first paper on the almost disturbance decoupling problem, is proposed in this paper to exploit the fact that the tracking and the almost disturbance decoupling performances are easily achieved by our proposed approach. The simulation results show that our proposed approach has achieved the almost disturbance decoupling performance perfectly. |
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Keywords: | Fuzzy logic control Almost disturbance decoupling Feedback linearizable Composite Lyapunov approach Uniform ultimate bounded AMIRA&rsquo s ball and beam system |
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