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Yet Another Real-Time Specification for the Steam Boiler: Local Clocks to Statically Measure Systems Performance

机译:蒸汽锅炉的另一个实时规范:用于静态测量系统性能的本地时钟

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摘要

In this paper we apply a new real-time modeling to the well-known Steam Boiler case study. The novelty of our approach is in explicitly representing the various system components, i. e. hardware sensors, software controllers and so on, with separate local clocks. The aim of our approach is to be able to statically analyze the global system specification taking into account the relative speed of each system components. For example, we can statically verify, if, and how changing the local speed of a component can affect the global performance of the system. Component behaviors are specified by means of a simple process algebra. Local clocks are modeled as higher order terms in a given signature, and unification is used to define the common clock. Then an operational semantics defines which transitions a process can perform and which transitions let time to elapse.
机译:在本文中,我们将新的实时建模应用于著名的蒸汽锅炉案例研究。我们方法的新颖性在于明确表示各种系统组件,即e。硬件传感器,软件控制器等,带有独立的本地时钟。我们的方法的目的是能够考虑到每个系统组件的相对速度来静态分析全局系统规范。例如,我们可以静态验证是否以及更改组件的本地速度如何影响系统的整体性能。组件行为通过简单的过程代数来指定。在给定的签​​名中,本地时钟被建模为高阶项,并且统一用于定义公共时钟。然后,操作语义定义了流程可以执行的转换以及哪些转换需要时间。

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