A Parametric Counterexample Refinement Approach for Robust Timed Specifications

Louis-Marie Traonouez
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引用次数: 11

Abstract

Robustness analyzes the impact of small perturbations in the semantics of a model. This allows to model hardware imprecision and therefore it has been applied to determine implementability of timed automata. In a recent paper, we extend this problem to a specification theory for real-timed systems based on timed input/output automata, that are interpreted as two-player games. We propose a construction that allows to synthesize an implementation of a specification that is robust under a given timed perturbation, and we study the impact of these perturbations when composing different specifications. To complete this work we present a technique that evaluates the greatest admissible perturbation. It consists in an iterative process that extracts a spoiling strategy when a game is lost, and through a parametric analysis refines the admissible values for the perturbation. We demonstrate this approach with a prototype implementation.
鲁棒定时规范的参数反例细化方法
鲁棒性分析模型语义中的小扰动的影响。这允许建模硬件不精确,因此它已被应用于确定时间自动机的可实现性。在最近的一篇论文中,我们将这个问题扩展到基于定时输入/输出自动机的实时系统的规范理论,这被解释为双人游戏。我们提出了一种结构,允许在给定时间扰动下合成规范的鲁棒实现,并且我们研究了这些扰动在组成不同规范时的影响。为了完成这项工作,我们提出了一种评估最大可接受扰动的技术。它包含一个迭代过程,当游戏失败时提取破坏策略,并通过参数分析细化摄动的可接受值。我们用一个原型实现来演示这种方法。
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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