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Distributed State Estimation for State-Saturated Power Systems under Denial-of-Service Attacks

机译:拒绝服务攻击下的状态饱和电力系统的分布式状态估计

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In this paper, the distributed state estimation problem is studied for a class of state-saturated power systems subject to Denial-of-Service (DoS) attacks. The randomly occurring DoS attacks is modeled by a series of Bernoulli distributed stochastic variables with known probability distributions. The aim of this paper is to design a distributed estimator ensure, in the presence of both cyber-attacks and state saturations, the desired estimation performance is satisfied. By virtue of some typical matrix inequalities, a tight upper bound of estimation error covariance is derived. The estimation parameters are obtained with the help of the solution of a set of Riccati-like difference equations. The developed recursive algorithm is independent of the global information and thus satisfies the requirements of scalability and online application. Finally, a practical example is developed to verify the validity of the designed estimator.
机译:在本文中,研究了分布式状态估计问题,用于对拒绝服务(DOS)攻击的一类状态饱和电力系统。随机发生的DOS攻击由具有已知概率分布的一系列Bernoulli分布式随机变量进行建模。本文的目的是设计分布式估计器,确保在网攻击和状态饱和状态存在下,满足所需的估计性能。借助于一些典型的矩阵不等式,推导出估计误差协方差的紧密上限。借助于一组Riccati样差分方程的帮助获得估计参数。开发的递归算法与全局信息无关,从而满足可伸缩性和在线应用的要求。最后,开发了一个实际的例子来验证设计估计器的有效性。

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