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An adaptive control scheme for discrete-time T-S fuzzy systems with unknown membership parameters

机译:隶属参数未知的离散时间T-S模糊系统的自适应控制方案

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This paper presents a new study of adaptive control of discrete-time input-output multiple-delay T-S fuzzy systems whose membership function parameters and dynamics parameters are both unknown. A multiple-delay prediction fuzzy system model with such uncertain parameters is used to form a nonlinearly parametrized estimation error. A gradient algorithm is derived, based on a nonlinear error model, to adaptively update the parameters of the feedback control law for the uncertain T-S fuzzy system. Stability and robustness of the adaptive laws are analyzed in the T-S system model framework to clarify the inherent system properties and specify the key design conditions as well. Simulation results are presented to illustrate the adaptive control design and verify the desired closed-loop system properties.
机译:本文提出了隶属函数参数和动力学参数均未知的离散时间输入-输出多时滞T-S模糊系统的自适应控制的新研究。具有这种不确定参数的多延迟预测模糊系统模型用于形成非线性参数化的估计误差。基于非线性误差模型,推导了一种梯度算法,可以自适应地更新不确定T-S模糊系统的反馈控制律参数。在T-S系统模型框架中分析了自适应定律的稳定性和鲁棒性,以阐明固有的系统特性并指定关键的设计条件。给出仿真结果以说明自适应控制设计并验证所需的闭环系统特性。

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