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Modeling distributed real-time applications with specification PEARL

机译:使用规范PEARL对分布式实时应用程序建模

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摘要

The methodology of hardware/software co-design of embedded control systems with Specification PEARL is presented. Hardware and software are modeled with the language Specification PEARL, which has its origins in standard Multiprocessor PEARL. Its usefulness is enhanced for modeling hierarchical and asymmetrical multiprocessor systems, and by additional parameters for schedulability analysis. Graphical symbols are introduced for its constructs to enable graphical modeling while maintaining the semantical background. It is meant to be a superlayer for programs, based on the PEARL programming model. To model program tasks, Timed State Transition Diagrams have been defined. The model of a co-designed system is verified for feasibility with co-simulation. The resulting information should be used when considering changes in a current design with the goal of producing a temporally feasible model. To support dynamic re-configurations, configuration management is introduced into the models. Since UML is becoming a de facto standard also for designing embedded control systems, and since Timed State Transition Diagrams and State Chart Diagrams share great similarity, an interface of the methodology to UML 2 is defined, using UML's extension mechanisms.
机译:介绍了采用规范PEARL的嵌入式控制系统的硬件/软件协同设计方法。硬件和软件使用规范PEARL语言进行建模,该语言起源于标准多处理器PEARL。它对于建模分层和非对称多处理器系统以及通过可调度性分析的附加参数,增强了其实用性。引入图形符号用于其构造,以在保持语义背景的同时实现图形建模。它旨在成为基于PEARL编程模型的程序的超级层。为了建模程序任务,已定义了定时状态转换图。通过共同仿真验证了共同设计系统的模型的可行性。当考虑当前设计中的更改时,应使用结果信息,以产生时间上可行的模型为目标。为了支持动态重新配置,模型中引入了配置管理。由于UML也已成为设计嵌入式控制系统的事实上的标准,并且由于定时状态转换图和状态图具有极大的相似性,因此使用UML的扩展机制定义了该方法与UML 2的接口。

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