Model-Checking and Game theory for Synthesis of Safety Rules

M. Machin, F. Dufossé, Jérémie Guiochet, D. Powell, Matthieu Roy, H. Waeselynck
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引用次数: 17

Abstract

Ensuring that safety requirements are respected is a critical issue for the deployment of hazardous and complex reactive systems. We consider a separate safety channel, called a monitor, that is able to partially observe the system and to trigger safety-ensuring actuations. We address the issue of correctly specifying such a monitor with respect to safety and liveness requirements. Two safety requirement synthesis programs are presented and compared. Based on a formal model of the system and its hazards, they compute a monitor behavior that ensures system safety without unduly compromising system liveness. The first program uses the model-checker NuSMV to check safety requirements. These requirements are automatically generated by a branch-and-bound algorithm. Based on a game theory approach, the second program uses the TIGA extension of UPPAAL to synthesize safety requirements, starting from an appropriately reformulated representation of the problem.
安全规则综合的模型检验与博弈论
确保安全要求得到尊重是部署危险和复杂反应系统的关键问题。我们考虑了一个单独的安全通道,称为监视器,它能够部分地观察系统并触发确保安全的驱动。我们根据安全性和活动性要求,解决了正确指定这种监视器的问题。提出了两种安全需求综合方案并进行了比较。基于系统及其危险的正式模型,他们计算一个监视器行为,以确保系统安全,而不会过度损害系统的活性。第一个程序使用模型检查器NuSMV来检查安全要求。这些需求是由分支定界算法自动生成的。基于博弈论方法,第二个方案使用UPPAAL的TIGA扩展来综合安全需求,从问题的适当重新表述的表示开始。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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