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Resilient stabilization of Multi-Hop Control Networks subject to malicious attacks

机译:抵抗恶意攻击的多跳控制网络的弹性稳定

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摘要

A Multi-hop Control Network (MCN) consists of a dynamical system where the communication between sensors, actuators and computational units is supported by a (wireless) multi-hop communication network and data flow is performed using scheduling and routing of sensing and actuation data. Secure stabilization of an MCN is a challenging open problem tightly related to Cyber-Physical Systems security. In this paper we address the co-design problem of controller and communication protocol of an MCN where the plant is a MIMO LTI system and the communication nodes are subject to failures and malicious attacks. We first characterize by means of necessary and sufficient conditions the set of network configurations that invalidate controllability and observability of the plant. Then, we investigate the problem of detecting and isolating failures and malicious attacks to communication nodes. We provide necessary and sufficient conditions for the solvability of this problem. (C) 2016 Elsevier Ltd. All rights reserved.
机译:多跳控制网络(MCN)由一个动态系统组成,其中传感器,执行器和计算单元之间的通信由一个(无线)多跳通信网络支持,并且使用感测和驱动数据的调度和路由来执行数据流。 MCN的安全稳定是一个与网络物理系统安全性紧密相关的挑战性开放问题。在本文中,我们解决了一个MCN控制器和通信协议的协同设计问题,该工厂是MIMO LTI系统,并且通信节点容易遭受故障和恶意攻击。我们首先通过必要和充分的条件来表征使工厂的可控制性和可观察性无效的网络配置集。然后,我们调查检测和隔离对通信节点的故障和恶意攻击的问题。我们提供了解决此问题的必要和充分条件。 (C)2016 Elsevier Ltd.保留所有权利。

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