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Towards a Call Behavior-Based Compositional Verification Framework for SysML Activity Diagrams

机译:朝着SYSML活动图表的基于呼叫行为的组成验证框架

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SysML activity diagram is a standard modeling language for complex systems. It supports systems' composition by providing the operator 'call behavior'. In general, the verification of systems modeled with those diagram inherit the limitations of the developed built-in tools, especially the case of model checking. To address this shortcoming, we propose a compositional verification framework based on the call behavior operator to alleviate the state space explosion problem of model-checking. The framework decomposes a property into local sub-properties and verify them separately on the composed behavioral diagrams. Further, we propose to ignore the diagrams' artifacts that are useless with respect to the property under verification. We prove the soundness of the proposed approach by showing that the result deduced from the verification of the local properties is always preserved. The verification results are obtained by encoding SysML activity diagrams in the probabilistic model checker 'PRISM'. Finally, we demonstrate the effectiveness of our framework by verifying a set of properties on two use cases that require a large amount of memory and a considerable time processing.
机译:SYSML活动图是复杂系统的标准建模语言。它通过提供操作员“呼叫行为”来支持系统的组合。通常,使用这些图建模的系统验证继承了开发的内置工具的限制,特别是模型检查的情况。为了解决这种缺点,我们提出了一种基于呼叫行为运营商的组成验证框架,以缓解模型检查的状态空间爆炸问题。该框架将属性分解为本地子属性,并在组成的行为图上单独验证它们。此外,我们建议忽略在验证下对属性无用的图表的伪影。我们通过表示从本地属性的验证推断的结果总是保留的结果,我们证明了所提出的方法的声音。通过在概率模型检查器“棱镜”中编码Sysml活动图来获得验证结果。最后,我们通过验证需要大量内存的两种用例以及相当长的时间处理,验证了一组属性来展示我们框架的有效性。

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