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A Runtime Safety Analysis Concept for Open Adaptive Systems

机译:开放式自适应系统的运行时安全分析概念

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In the automotive industry, modern cyber-physical systems feature cooperation and autonomy. Such systems share information to enable collaborative functions, allowing dynamic component integration and architecture reconfiguration. Given the safety-critical nature of the applications involved, an approach for addressing safety in the context of reconfiguration impacting functional and non-functional properties at runtime is needed. In this paper, we introduce a concept for runtime safety analysis and decision input for open adaptive systems. We combine static safety analysis and evidence collected during operation to analyse, reason and provide online recommendations to minimize deviation from a system's safe states. We illustrate our concept via an abstract vehicle platooning system use case.
机译:在汽车工业中,现代网络物理系统具有合作与自治的特征。此类系统共享信息以启用协作功能,从而允许动态组件集成和体系结构重新配置。考虑到所涉及应用程序的安全性至关重要,需要一种在运行时影响功能和非功能属性的重新配置环境下解决安全问题的方法。在本文中,我们介绍了开放式自适应系统的运行时安全性分析和决策输入的概念。我们将静态安全分析和运行过程中收集的证据结合起来,进行分析,推理并提供在线建议,以最大程度地减少与系统安全状态的偏差。我们通过一个抽象的车辆排系统用例来说明我们的概念。

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