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Design of stable fuzzy controller for non-linear systems subject to imperfect premise matching based on grid-point approach

机译:基于不完美前提匹配的非线性系统稳定模糊控制器的设计

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This study investigates the systems stability of fuzzy-model-based (FMB) control systems. Based on the T-S fuzzy model representing the non-linear system, a fuzzy controller using grid-point (GP) technique is proposed to close the feedback loop. A GP is defined as the sub-operating domain of the non-linear system. For each GP, a corresponding GP fuzzy controller is employed to control the system. As the non-linearity in each GP is lower compared to that of the full operating domain, it is in favour of yielding relaxed stability analysis result using the GP control technique of which the nature of the membership functions and operating domain are taken into account. Furthermore, unlike most of the fuzzy control approaches, the proposed one can be applied to FMB control systems subject to imperfect premise matching that the fuzzy model and fuzzy controller do not share the same premise membership functions. As a result, some simple membership functions can be employed for the fuzzy controllers to lower the implementation cost. Based on the Lyapunov stability theory, stability conditions in terms of linear matrix inequalities are derived to guarantee the system stability and facilitate the controller synthesis. Simulation examples are given to demonstrate the merits of the proposed FMB control scheme using the proposed GP technique.
机译:这项研究调查了基于模糊模型(FMB)的控制系统的系统稳定性。基于代表非线性系统的T-S模糊模型,提出了一种基于网格点(GP)技术的模糊控制器来闭合反馈回路。 GP被定义为非线性系统的子操作域。对于每个GP,采用相应的GP模糊控制器来控制系统。由于每个GP中的非线性都比整个操作域的非线性要低,因此有利于使用考虑到隶属函数和操作域的性质的GP控制技术来获得轻松的稳定性分析结果。此外,与大多数模糊控制方法不同,所提出的方法可应用于不完全前提匹配(即模糊模型和模糊控制器不共享相同的前提隶属函数)的FMB控制系统。结果,一些简单的隶属函数可以用于模糊控制器以降低实现成本。基于李雅普诺夫稳定性理论,导出了线性矩阵不等式的稳定条件,以保证系统的稳定性并促进控制器的综合。仿真实例说明了使用所提出的GP技术提出的FMB控制方案的优点。

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  • 来源
    《Control Theory & Applications, IET》 |2010年第12期|p.2770-2780|共11页
  • 作者

    Lam H.K.;

  • 作者单位

    Division of Engineering, King¿s College London;

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