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Identifying Implicit Component Interactions in Distributed Cyber-Physical Systems

机译:识别分布式网络物理系统中的隐式分量交互

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摘要

Modern distributed systems and networks, like those found in cyber-physical system domains such as critical infrastructures, contain many complex interactions among their constituent software and/or hardware components. Despite extensive testing of individual components, security vulnerabilities resulting from unintended and unforeseen component interactions (so-called implicit interactions) often remain undetected. This paper presents a method for identifying the existence of implicit interactions in designs of distributed cyber-physical systems using the algebraic modeling framework known as Communicating Concurrent Kleene Algebra (C²KA). Experimental results verifying the applicability of C²KA for identifying dependencies in system designs that would otherwise be very hard to find are also presented. More broadly, this research aims to advance the specification, design, and implementation of distributed cyber-physical systems with improved cybersecurity assurance by providing a new way of thinking about the problem of implicit interactions through the application of formal methods.
机译:像在诸如关键基础结构之类的电子物理系统领域中发现的现代分布式系统和网络,在其组成软件和/或硬件组件之间包含许多复杂的交互作用。尽管对单个组件进行了广泛的测试,但是由于意外和无法预料的组件交互(所谓的隐式交互)而导致的安全漏洞通常仍然未被发现。本文提出了一种方法,该方法使用称为“并发并行克莱恩代数(C²KA)”的代数建模框架来识别分布式网络物理系统设计中隐式交互的存在。还提供了实验结果,这些结果验证了C²KA在识别系统设计中的依赖关系方面的适用性,否则将很难找到这些依赖关系。更广泛地说,该研究旨在通过提供一种通过形式方法的应用来思考隐式交互问题的新方法,以提高分布式网络物理系统的规范,设计和实现,从而提高网络安全性。

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