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A compositional semantics for UML state machines aimed at performance evaluation

机译:用于性能评估的UML状态机的组合语义

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Unified Modeling Language (UML) is gaining acceptance to describe the behaviour of systems. It has attracted the attention of researchers that are interested in deriving, automatically, performance evaluation models from system's descriptions. A required step to automatically produce a performance model (as any executable model) is that the semantics of the description language is formally defined. Among the UML diagrams, we concentrate on state machines (SMs) and we build a semantics for a significant subset of them in terms of generalized stochastic Petri nets (GSPNs). The paper shows how to derive an executable GSPN model from a description of a system, expressed as a set of SMs. The semantics is compositional since the executable GSPN model is obtained by composing, using standard Petri net operators, the GSPN models of the single SMs, and each GSPN model is obtained by composition of submodels for SM basic features.
机译:统一建模语言(UML)获得了描述系统行为的认可。它吸引了有兴趣从系统描述自动生成性能评估模型的研究人员的注意力。自动生成性能模型(与任何可执行模型一样)的必需步骤是正式定义了描述语言的语义。在UML图中,我们专注于状态机(SM),并根据广义随机Petri网(GSPN)为它们的重要子集构建语义。本文展示了如何从系统描述中得出可执行的GSPN模型,以一组SM表示。语义是组合的,因为可执行的GSPN模型是通过使用标准Petri网算子组合单个SM的GSPN模型而获得的,而每个GSPN模型都是通过组合SM基本特征的子模型而获得的。

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