使用时间逻辑指定时间模式

Dogan Ulus, O. Maler
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引用次数: 10

摘要

使用形式化规范监测系统行为似乎是分析网络物理系统的有效技术。然而,为了在监视中实现预期的结果,规范语言首先需要是直观、优雅和富有表现力的。在本文中,我们提出了一个众所周知的Halpern-Shoham (hs)逻辑的度量扩展,称为度量罗盘逻辑(mcl),用于监控目的。该逻辑最初是为高级时间推理而提出的,它非常具有表现力,使用户能够以一种直观而优雅的方式指定许多时间模式。作为我们的主要贡献,我们提出了一种离线监控技术,用于mcl中指定的定时模式。我们的解决方案建立在为定时正则表达式(TRE)匹配开发的框架之上,但探索了不同的(逻辑)方向。最后,我们研究了原子公式的几个实用特性,并讨论了一种与TRE相结合的定时模式规范语言。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Specifying Timed Patterns using Temporal Logic
Monitoring system behaviors using formal specifications appears to be an effective technique in analyzing cyber-physical systems. However, to achieve intended results in monitoring, specification languages need to be intuitive, elegant, and expressive at the first place. In this paper, we propose a metric extension of well-known Halpern-Shoham (hs) logic, called Metric Compass Logic (mcl), for monitoring purposes. Originally proposed for high-level temporal reasoning, the logic hs is very expressive and enables users to specify many temporal patterns in an intuitive and elegant way. As our main contribution, we present an offline monitoring technique for timed patterns specified in mcl. Our solution is built upon the framework developed for timed regular expressions (TRE) matching but explores a different (logical) direction. We finally study several practical features concerning atomic formulas and discuss a combined timed pattern speciication language with TRE.
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