论文标题
传感器攻击下非线性系统的安全状态估计算法
A secure state estimation algorithm for nonlinear systems under sensor attacks
论文作者
论文摘要
在本文中考虑了连续时间非线性系统的状态估计,其中可以通过注入潜在无界的加性信号来恶意控制传感器输出的子集。类似于我们在\ cite {chong2015Observibality}中的连续时间线性系统的早期工作,我们将在存在传感器攻击的情况下估算到真实状态的融合为“ $ m $ $ $攻击下的可观察性”,其中$ m $ to the $ m $参考了袭击者可以访问的传感器数量。与线性案例不同,我们仅提供足够的条件,因此在$ M $攻击下可观察到非线性系统。该条件需要存在渐近观察者,这些观察者在输入到国家稳定的意义上就攻击信号具有鲁棒性。我们表明,从观察者银行产生的状态估计中选择兼容状态估计的算法实现了渐近状态重建。我们还为一类非线性系统提供了一种建设性方法,以设计具有理想鲁棒性属性的状态观察者。这项研究的相关性在监视配电网络的安全操作方面进行了说明。
The state estimation of continuous-time nonlinear systems in which a subset of sensor outputs can be maliciously controlled through injecting a potentially unbounded additive signal is considered in this paper. Analogous to our earlier work for continuous-time linear systems in \cite{chong2015observability}, we term the convergence of the estimates to the true states in the presence of sensor attacks as `observability under $M$ attacks', where $M$ refers to the number of sensors which the attacker has access to. Unlike the linear case, we only provide a sufficient condition such that a nonlinear system is observable under $M$ attacks. The condition requires the existence of asymptotic observers which are robust with respect to the attack signals in an input-to-state stable sense. We show that an algorithm to choose a compatible state estimate from the state estimates generated by the bank of observers achieves asymptotic state reconstruction. We also provide a constructive method for a class of nonlinear systems to design state observers which have the desirable robustness property. The relevance of this study is illustrated on monitoring the safe operation of a power distribution network.