From UML to Petri Nets for non functional Property Verification

F. Mallet, Marie-Agnès Peraldi-Frati, C. André
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引用次数: 12

Abstract

Real-time embedded architectures consist of software and hardware parts. Meeting non-functional constraints (e.g., real-time constraints) greatly depends on the mappings from the system functionalities to software and hardware components. Thus, there is a strong demand for precise architecture and allocation modeling, amenable to performance analysis. The paper proposes a model-driven approach for the assessment of the quality of allocations of the system functionalities to the architecture. We consider two technical domains: the UML domain for the definition of the model elements, and a non functional property analysis domain, external to UML, used for formal verification. This paper focuses on 1) the specification of expected behavior by UML activities, specialized to support the synchronous paradigm, 2) the definition of an analysis model for temporal properties: the Modular and Hierarchical Time Petri Nets, 3) the transformation from the specification model to the analysis model.
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从UML到Petri网的非功能属性验证
实时嵌入式体系结构由软件和硬件两部分组成。满足非功能约束(例如,实时约束)很大程度上依赖于从系统功能到软件和硬件组件的映射。因此,对精确的体系结构和分配建模有强烈的需求,以适应性能分析。本文提出了一种模型驱动的方法,用于评估系统功能分配到体系结构的质量。我们考虑两个技术领域:用于定义模型元素的UML领域,以及用于形式化验证的UML外部的非功能属性分析领域。本文的重点是1)UML活动的预期行为规范,专门用于支持同步范式,2)时间属性的分析模型的定义:模块化和分层时间Petri网,3)从规范模型到分析模型的转换。
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