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Stabilization of a Class of Nonlinear Coupled Ordinary Differential Equation-Partial Differential Equation Systems Via Sampled-Data H-infinity Fuzzy Controller

机译:采样数据H-Infinity模糊控制器稳定一类非线性耦合常微分方体偏微分方体系统

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摘要

The main intention of this study is to develop a sampled-data H-infinity fuzzy controller design to analyze the stability of coupled ordinary differential equation (ODE)-partial differential equation (PDE) systems, where the nonlinear coupled system is expressed by Takagi-Sugeno (T-S) fuzzy models. The coupled ODE-PDE system in this paper constitutes an n-dimensional nonlinear subsystem of ODEs and a scalar linear parabolic subsystem of PDE. Then, in regard to the T-S model representation, Lyapunov technique is utilized to model a sampled-data H-infinity fuzzy controller to stabilize the contemplated coupled systems and to attain a desired H-infinity disturbance attenuation performance. The formulated time-dependent Lyapunov functional makes full use of the accessible information about the actual sampling pattern. The outcome of the sampled-data H-infinity fuzzy control problem is expressed as linear matrix inequality (LMI) optimization problem which can be solved effectively by using any of the available softwares. Finally, hypersonic rocket car model is furnished with simulation results to exhibit the efficacy of the proposed theoretical results.
机译:本研究的主要目的是开发采样数据H-Infinity模糊控制器设计,以分析耦合常微分方程(ODE) - 分子微分方程(PDE)系统的稳定性,其中非线性耦合系统由Takagi表示Sugeno(TS)模糊模型。本文耦合的oDe-PDE系统构成了PDE的N维非线性子系统和标量线性抛物面子系统。然后,关于T-S模型表示,利用Lyapunov技术用于模拟采样数据H-Infinity模糊控制器以稳定预期的耦合系统并获得所需的H-Infinity扰动衰减性能。配制的时间依赖Lyapunov功能可以充分利用有关实际采样模式的可访问信息。采样数据H-Infinity模糊控制问题的结果表示为线性矩阵不等式(LMI)优化问题,其可以通过使用任何可用的软件来有效地解决。最后,高超声音火箭车型提供了仿真结果,表现出提出的理论结果的功效。

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