针对网络物理系统恶意攻击的弹性协调器

Y. Eun, Jaegeun Park, Yechan Jeong, Dae-Heon Kim, Kyung-Joon Park
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引用次数: 0

摘要

网络物理系统(cps)抵御恶意攻击的弹性由于其广泛认识到的重要性,在过去十年中一直是一个活跃的研究课题。弹性CPS能够容忍某些攻击,在减少容量的情况下运行,并保持核心功能,并且优雅地失败以避免任何灾难性后果。现有的工作包括层次控制系统的体系结构,它是具有广泛适用性的CPS的一个子集,专为弹性而定制。也就是说,该体系结构包括本地层、网络层和监督层,以及诸如单一结构、管理程序的资源隔离、冗余传感器/执行器和软件定义的网络功能等特性。现有的工作还包括确保每一层各自具有一定程度的弹性的方法。然而,对于整体系统级的弹性,每个层的单个方法必须在部署中进行协调,因为所有三个层都为CPS的操作交互。为此,在本工作中提出了CPS的弹性协调器。弹性协调器是监管层的中心弹性协调器、网络层的网络弹性协调器,最后是组成物理层的多个物理系统中的局部弹性协调器的互连。我们通过实例展示了弹性协调器的操作,并说明RC实现的攻击弹性水平大于每一层的弹性之和。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Resiliency Coordinator Against Malicious Attacks for Cyber-Physical Systems
Resiliency of cyber-physical systems (CPSs) against malicious attacks has been a topic of active research in the past decade due to widely recognized importance. Resilient CPS is capable of tolerating some attacks, operating at a reduced capacity with core functions maintained, and failing gracefully to avoid any catastrophic consequences. Existing work includes an architecture for hierarchical control systems, which is a subset of CPS with wide applicability, that is tailored for resiliency. Namely, the architecture consists of local, network and supervision layers and features such as simplex structure, resource isolation by hypervisors, redundant sensors/actuators, and software defined network capabilities. Existing work also includes methods of ensuring a level of resiliency at each one of the layers, respectively. However, for a holistic system level resiliency, individual methods at each layers must be coordinated in their deployment because all three layers interact for the operation of CPS. For this purpose, a resiliency coordinator for CPS is proposed in this work. The resiliency coordinator is the interconnection of central resiliency coordinator in the supervision layer, network resiliency coordinator in the network layer, and finally, local resiliency coordinators in multiple physical systems that compose the physical layer. We show, by examples, the operation of the resiliency coordinator and illustrate that RC accomplishes a level of attack resiliency greater than the sum of resiliency at each one of the layers separately.
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