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首页> 外文期刊>Circuits, systems, and signal processing >Resilient H_∞ Filtering for Stochastic Systems with Randomly Occurring Gain Variations, Nonlinearities and Channel Fadings
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Resilient H_∞ Filtering for Stochastic Systems with Randomly Occurring Gain Variations, Nonlinearities and Channel Fadings

机译:具有随机发生的增益变化,非线性和信道衰落的随机系统的弹性H_∞滤波

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In this paper, the resilient H-infinity filtering problem for a class of stochastically uncertain discrete-time systems with randomly occurring gain variations, nonlinearities (RONs) and channel fadings is investigated. Considering the existences of random parameter fluctuations in both actual plant and filter, a sequence of mutually independent random variables with known probabilistic distribution is utilized to better describe the stochastic characteristics. The phenomenon RONs, which is regulated by random variables with Bernoulli distribution, is used to reflect the reality that actual systems are generally nonlinear. The system measurement with channel fadings is described by the stochastic Rice fading model, where the channel coefficients are a set of mutually independent random variables with any probability density function. It is worthwhile to mention that a series of slack matrix variables are exploited to eliminate the coupling between the plant matrices and the designed filter parameters by providing free dimensions in the solution space. The purpose of this paper is to design a resilient H-infinity filter such that the filtering error system is asymptotically stable with a prescribed H-infinity performance level. And sufficient conditions for filter design are eventually converted into solving a convex optimization problem over linear matrix inequalities. A numerical example is presented to illustrate effectiveness of the proposed approach.
机译:本文研究了一类具有随机发生的增益变化,非线性(RON)和信道衰落的随机不确定离散系统的弹性H-∞滤波问题。考虑到实际设备和过滤器中都存在随机参数波动,利用已知概率分布的一系列相互独立的随机变量可以更好地描述随机特征。 RONs由具有伯努利分布的随机变量调节,用于反映实际系统通常是非线性的事实。随机衰落模型描述了带有信道衰落的系统测量,其中信道系数是一组具有任何概率密度函数的相互独立的随机变量。值得一提的是,通过在解空间中提供自由尺寸,利用了一系列松弛矩阵变量来消除植物矩阵与设计的滤波器参数之间的耦合。本文的目的是设计一种弹性H无限滤波器,使滤波误差系统在规定的H无限性能水平下渐近稳定。滤波器设计的充分条件最终转化为解决线性矩阵不等式的凸优化问题。数值例子表明了该方法的有效性。

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