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Decentralized Adaptive Fuzzy Secure Control for Nonlinear Uncertain Interconnected Systems Against Intermittent DoS Attacks

机译:非线性不确定关联系统的分散DoS攻击分散自适应模糊安全控制。

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Cyber-physical systems (CPSs) are naturally highly interconnected and complexly nonlinear. This paper investigates the problem of decentralized adaptive output feedback control for CPSs subject to intermittent denial-of-service (DoS) attacks. The considered CPSs are modeled as a class of nonlinear uncertain strict-feedback interconnected systems. When a DoS attack is active, all the state variables become unavailable and standard backstepping cannot be applied. To overcome this difficulty, a switching-type adaptive state estimator is constructed. Based on an improved average dwell time method incorporated by frequency and duration properties of DoS attacks, convex design conditions of controller parameters are derived in term of solving a set of linear matrix inequalities. The proposed controller guarantees that all closed-loop signals remain bounded, while the error signals converge to a small neighborhood of the origin. As an illustrative example, the proposed control scheme is applied to a power network system.
机译:网络物理系统(CPS)自然是高度互连且复杂的非线性。本文研究了遭受间歇性拒绝服务(DoS)攻击的CPS的分散式自适应输出反馈控制问题。所考虑的CPS被建模为一类非线性不确定严格反馈互连系统。当DoS攻击处于活动状态时,所有状态变量将变得不可用,并且无法应用标准后推。为了克服该困难,构造了开关型自适应状态估计器。基于结合DoS攻击的频率和持续时间属性的改进的平均停留时间方法,从求解一组线性矩阵不等式的角度推导了控制器参数的凸设计条件。提出的控制器保证所有闭环信号保持有界,而误差信号收敛到原点的一小部分。作为说明性示例,所提出的控制方案被应用于电力网络系统。

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