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A tractable nonlinear fault detection and isolation technique with application to the cyber-physical security of power systems

机译:一种可处理的非线性故障检测与隔离技术,在电力系统网络物理安全中的应用

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This article consists of two parts: a theoretical part concerned with fault detection schemes, and an application part dealing with cyber security of power systems. In the first part, we develop a tractable approach to design a robust residual generator to detect and isolate faults in high dimensional nonlinear systems. Previous approaches on fault detection and isolation problems are either confined to linear systems or they are only applicable to low dimensional dynamics with more specific structures. In contrast, we propose a novel methodology to robustify a linear residual generator for a nonlinear system in the presence of certain disturbance signatures. To this end, we formulate the problem into the framework of quadratic programming which enables us to solve relatively high dimensional systems. In the second part, the application is motivated by the emerging problem of cyber security in power networks. We provide description of a multi-machine power system that represents a two-area power system, and we model a cyber-physical attack emanating from the vulnerabilities introduced by the interaction between IT infrastructure and power system. The algorithm developed in the first part is finally used to diagnose such an intrusion before the functionality of the power system is disrupted.
机译:本文由两部分组成:涉及故障检测方案的理论部分和涉及电力系统网络安全的应用部分。在第一部分中,我们开发了一种易于处理的方法来设计鲁棒的残差生成器,以检测和隔离高维非线性系统中的故障。先前关于故障检测和隔离问题的方法要么局限于线性系统,要么仅适用于具有特定结构的低维动力学。相比之下,我们提出了一种新颖的方法,可以在存在某些扰动特征的情况下为非线性系统的线性残差生成器提供鲁棒性。为此,我们将问题表达在二次规划的框架中,这使我们能够解决相对高维的系统。在第二部分中,该应用程序受到电力网络中新出现的网络安全问题的推动。我们提供了代表两个区域的电力系统的多机器电力系统的描述,并且我们对由IT基础架构和电力系统之间的交互所引入的漏洞产生的网络物理攻击进行了建模。第一部分中开发的算法最终用于在电力系统功能中断之前诊断此类入侵。

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