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Observer-Based Finite-Time H_∞Control for Interconnected Fuzzy Systems With Quantization and Random Network Attacks

机译:基于观察者的有限时间H_∞Control用于量化和随机网络攻击的互连模糊系统

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摘要

This article investigates the observer-based finite-time H-infinity control problem for interconnected fuzzy systems with quantization and random network attacks, where two types of network attacks including denial-of-service (DoS) and fault data injection (FDI) attacks are considered. In order to achieve the occupancy reduction of network resources, the measured outputs of interconnected systems are quantized through a logarithmic quantizer before being transmitted by the communication channel. Combining the effects of quantization and random network attacks, an observer-based control model is first constructed. Then, based on Lyapunov functional approach and stochastic analysis technique, some sufficient conditions are presented such that the considered closed-loop interconnected system is stochastically finite-time bounded with a prescribed disturbance attenuation level, and the gain matrices of fuzzy observer and fuzzy controller can be found by solving an optimization algorithm with linear matrix inequalities constraints. Finally, two simulation examples are given to illustrate the validity of the proposed approach.
机译:本文调查了对具有量化和随机网络攻击的互联模糊系统的观察者的有限时间H-Infinity控制问题,其中两种类型的网络攻击包括拒绝服务(DOS)和故障数据注入(FDI)攻击经过考虑的。为了实现网络资源的占用降低,在通过通信信道发送之前通过对数量化器量化互连系统的测量输出。结合量化和随机网络攻击的影响,首先构建了一种基于观察者的控制模型。然后,基于Lyapunov功能方法和随机分析技术,提出了一些足够的条件,使得所考虑的闭环互连系统是用规定的扰动衰减水平的随机有限时间,以及模糊观察者和模糊控制器的增益矩阵通过求解具有线性矩阵不等式约束的优化算法。最后,给出了两个模拟实施例来说明所提出的方法的有效性。

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