面向动态形成的信息物理系统网络体系结构的自动化安全分析

Jennifer Brings, Marian Daun
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引用次数: 2

摘要

动态形成的信息物理系统网络在制造业、交通运输、汽车、航空电子等领域越来越广泛。未来互联网技术的出现和不同系统更紧密集成的雄心导致了高度协作的网络物理系统。这种网络物理系统形成网络,以提供单个系统本身无法提供的额外功能、行为和利益。由于安全是这些领域系统的主要关注点,因此需要为这些协同网络物理系统的安全分析提供足够的支持。这种支持必须明确考虑网络物理系统的动态形成的网络。这是一项具有挑战性的任务,因为这些网络物理系统网络的配置(即单个系统加入的超级系统的架构)可能会因加入网络物理系统网络的实际系统而有很大差异。此外,网络的配置严重影响单个系统执行的适应性,从而不仅影响系统网络的体系结构,还影响所有涉及的单个系统的体系结构。然而,由于现有的安全分析技术并不意味着支持这样一组潜在的系统网络配置,单个系统必须能够在运行时处理,我们建议对考虑系统网络配置的这些系统的安全分析提供自动化支持。应用于工业实例的初步评估结果表明,所提出的支持可以帮助检测安全缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards automated safety analysis for architectures of dynamically forming networks of cyber-physical systems
Dynamically forming networks of cyber-physical systems are becoming increasingly widespread in manufacturing, transportation, automotive, avionics and more domains. The emergence of future internet technology and the ambition for ever closer integration of different systems leads to highly collaborative cyber-physical systems. Such cyber-physical systems form networks to provide additional functions, behavior, and benefits the individual systems cannot provide on their own. As safety is a major concern of systems from these domains, there is a need to provide adequate support for safety analyses of these collaborative cyber-physical systems. This support must explicitly consider the dynamically formed networks of cyber-physical systems. This is a challenging task as the configurations of these cyber-physical system networks (i.e. the architecture of the super system the individual system joins) can differ enormously depending on the actual systems joining a cyber-physical system network. Furthermore, the configuration of the network heavily impacts the adaptations performed by the individual systems and thereby impacting the architecture not only of the system network but of all individual systems involved. As existing safety analysis techniques, however, are not meant for supporting such an array of potential system network configurations the individual system will have to be able to cope with at runtime, we propose automated support for safety analysis for these systems that considers the configuration of the system network. Initial evaluation results from the application to industrial case examples show that the proposed support can aid in the detection of safety defects.
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