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首页> 外文期刊>Journal of the Franklin Institute >Non-fragile guaranteed cost control for uncertain stochastic nonlinear time-delay systems
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Non-fragile guaranteed cost control for uncertain stochastic nonlinear time-delay systems

机译:不确定随机非线性时滞系统的非脆弱性保证成本控制

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This paper deals with the problem of non-fragile guaranteed cost control for a class of uncertain stochastic nonlinear time-delay systems. The parametric uncertainties are assumed to be time-varying and norm bounded. The time-delay factors are unknown and time-varying with known bounds. The aim of this paper is to design a memoryless non-fragile state feedback control law such that the closed-loop system is stochastically asymptotically stable in the mean square for all admissible parameter uncertainties and the closed-loop cost function value is not more than a specified upper bound. A new sufficient condition for the existence of such controllers is presented based on the linear matrix inequality (LMI) approach. Then, a convex optimization problem is formulated to select the optimal guaranteed cost controller which minimizes the upper bound of the closed-loop cost function. Numerical example is given to illustrate the effectiveness of the developed techniques.
机译:研究了一类不确定的随机非线性时滞系统的非脆弱性保证成本控制问题。假定参数不确定性是随时间变化且受范数限制的。时延因子是未知的,并且在已知范围内随时间变化。本文的目的是设计一种无记忆的非脆弱状态反馈控制律,以使对于所有可容许的参数不确定性,闭环系统在均方中随机渐近稳定,并且闭环成本函数值不大于a。指定的上限。基于线性矩阵不等式(LMI)方法,为此类控制器的存在提出了新的充分条件。然后,提出一个凸优化问题,以选择最优的保证成本控制器,该控制器将闭环成本函数的上限最小化。数值算例说明了所开发技术的有效性。

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