论文标题
与基于分离的检测器重新配置的断开感知攻击检测和隔离
Disconnection-aware Attack Detection and Isolation with Separation-based Detector Reconfiguration
论文作者
论文摘要
这项研究解决了在动态网络控制系统的不良事件中的事件处理。事件处理可以分为五个步骤:检测,分析,遏制,消除和恢复。对于网络控制系统,可以通过攻击子系统的物理断开连接来进行遏制步骤。根据断开连接,应重新配置配备的攻击检测单元以保持其检测能力。特别是,将与断开子系统相关的检测亚基分开被认为是本研究中的特定重新配置方案。本文提出了与基于分离的检测器重新配置的断开感知攻击检测和隔离的问题。目的是找到一个攻击检测单元,即使在任何可能的断开和分离下,也可以保留其检测和隔离能力。难度是由于断开连接引起的网络拓扑变化,这可能会导致攻击检测单元内分布式观察者的稳定性损失。根据现有的控制器设计技术提出了解决方案,称为改造控制。此外,还展示了针对具有分布式生成的低压电源分配网络的应用。数值示例证据证明了通过基准分配网络对所提出的方法的实际使用。
This study addresses incident handling during an adverse event for dynamical networked control systems. Incident handling can be divided into five steps: detection, analysis, containment, eradication, and recovery. For networked control systems, the containment step can be conducted through physical disconnection of an attacked subsystem. In accordance with the disconnection, the equipped attack detection unit should be reconfigured to maintain its detection capability. In particular, separating the detection subunit associated with the disconnected subsystem is considered as a specific reconfiguration scheme in this study. This paper poses the problem of disconnection-aware attack detection and isolation with the separation-based detector reconfiguration. The objective is to find an attack detection unit that preserves its detection and isolation capability even under any possible disconnection and separation. The difficulty arises from network topology variation caused by disconnection that can possibly lead to stability loss of the distributed observer inside the attack detection unit. A solution is proposed based on an existing controller design technique referred to as retrofit control. Furthermore, an application to low-voltage power distribution networks with distributed generation is exhibited. Numerical examples evidence the practical use of the proposed method through a benchmark distribution network.