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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Observer-based exponential stabilization of Takagi- Sugeno fuzzy systems with state and input delays
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Observer-based exponential stabilization of Takagi- Sugeno fuzzy systems with state and input delays

机译:具有状态和输入时滞的Takagi-Sugeno模糊系统的基于观测器的指数镇定

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摘要

This paper proposes an exponential stabilization control method for uncertain Takagi-Sugeno fuzzy systems with state and input delays via output feedback. First, a unified memoryless fuzzy observer-based control method is introduced for stabilizing continuous and discrete uncertain time-delay fuzzy systems. Then, the exponential stability conditions are derived and converted to solving linear matrix inequality (LMI) problems. Based on the developed novel LMI algorithms, the controller and observer gains are able to be separately designed even in the presence of modelling uncertainty, state delay, and input delay. In comparison with existing techniques the proposed technique produces controlled states and state estimation errors that are guaranteed to exponentially converge to zero via output feedback. This is a major breakthrough for the control of uncertain systems with both state and input unavailable time-varying delays. Finally, two studies are carried out on continuous and discrete time-delay systems. Numerical simulation and comparison results demonstrate the quality of the obtained performance.
机译:提出了一种具有状态和输入时滞的不确定Takagi-Sugeno模糊系统的指数稳定控制方法。首先,介绍了一种基于无记忆模糊观测器的统一控制方法,用于稳定连续和离散的不确定时滞模糊系统。然后,导出指数稳定性条件并将其转换为求解线性矩阵不等式(LMI)问题。基于已开发的新颖LMI算法,即使存在建模不确定性,状态延迟和输入延迟的情况,也可以分别设计控制器和观察者的增益。与现有技术相比,所提出的技术产生受控状态和状态估计误差,这些误差和状态估计误差可通过输出反馈保证指数收敛至零。这对于控制具有状态和输入不可用时变延迟的不确定系统是一项重大突破。最后,对连续和离散时滞系统进行了两项研究。数值模拟和比较结果证明了所获得性能的质量。

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