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Non-fragile H∞ control with randomly occurring gain variations, distributed delays and channel fadings

机译:非脆弱H∞控制,具有随机发生的增益变化,分布式延迟和信道衰落

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摘要

This study is concerned with the non-fragile H∞ control problem for a class of discrete-time systems subject to randomly occurring gain variations (ROGVs), channel fadings and infinite-distributed delays. A new stochastic phenomenon (ROGVs), which is governed by a sequence of random variables with a certain probabilistic distribution, is put forward to better reflect the reality of the randomly occurring fluctuation of controller gains implemented in networked environments. A modified stochastic Rice fading model is then exploited to account for both channel fadings and random time-delays in a unified representation. The channel coefficients are a set of mutually independent random variables which abide by any (not necessarily Gaussian) probability density function on [0, 1]. Attention is focused on the analysis and design of a non-fragile H∞ output-feedback controller such that the closed-loop control system is stochastically stable with a prescribed H∞ performance. Through intensive stochastic analysis, sufficient conditions are established for the desired stochastic stability and H∞ disturbance attenuation, and the addressed non-fragile control problem is then recast as a convex optimisation problem solvable via the semi-definite programme method. An example is finally provided to demonstrate the effectiveness of the proposed design method.
机译:这项研究涉及一类具有随机发生的增益变化(ROGV),信道衰落和无限分布的延迟的离散时间系统的非脆弱H∞控制问题。提出了一种新的随机现象(ROGV),它由具有一定概率分布的一系列随机变量控制,以更好地反映网络环境中实现的控制器增益随机波动的现实。然后,利用改进的随机莱斯衰落模型,以统一表示方式考虑信道衰落和随机时延。信道系数是一组相互独立的随机变量,它们遵守[0,1]上的任何(不一定是高斯)概率密度函数。注意集中在非脆弱H∞输出反馈控制器的分析和设计上,以使闭环控制系统具有规定H∞性能的随机稳定。通过深入的随机分析,为所需的随机稳定性和H∞干扰衰减建立了充分的条件,然后将所解决的非脆弱控制问题重铸为可通过半定规划方法求解的凸优化问题。最后提供一个例子来证明所提出的设计方法的有效性。

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