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Runtime Safety Analysis for Safe Reconfiguration

机译:运行时安全性分析,安全重新配置

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Modern technical systems are increasingly built to exhibit self-x properties as, e.g., self-healing or self-optimization. For this, they require adaptation at runtime. This is even true for embedded or mechatronic systems which often operate in safety-critical environments. There, the effects of the adaptation with respect to safety must be analyzed carefully. However, not all parameters needed for safety analyses, e.g., the concrete system architecture, are known at design time. Consequently, safety analyses need to be executed during runtime. Current approaches of runtime safety analysis typically react to anomalies that already occurred in the system. Thus, unsafe system states cannot be excluded completely. We present a runtime safety analysis that prevents system states with an unacceptable risk that have not yet occurred. For this, we generate the reachable component structures at runtime and analyze them with respect to risk. The system is modified such that component structures with an unacceptable risk are not reachable any more and are thus prevented.
机译:现代技术系统越来越多地构建以表现为自我X属性,例如自我修复或自我优化。为此,它们需要在运行时进行调整。这对于嵌入式或机电调整系统甚至是真的,它们通常在安全关键环境中运行。在那里,必须小心地分析适应性对安全的影响。然而,并非安全分析所需的所有参数,例如混凝土系统架构在设计时都是已知的。因此,需要在运行时执行安全分析。运行时安全性分析的当前方法通常对系统已经发生的异常反应。因此,不能完全排除不安全的系统状态。我们提出了一个运行时安全分析,防止系统状态具有尚未发生的不可接受的风险。为此,我们在运行时生成可达部件结构,并分析它们的风险。系统被修改,使得具有不可接受的风险的组件结构不再达到并且因此被防止。

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