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A Two Level Approach to the Design of Software for Cooperating Embedded Systems

机译:一种用于协同嵌入式系统软件设计的两级方法

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This paper proposes an architecture concept to the design of software, for embedded systems and cooperating embedded systems, aimed to simplify not only design but also reuse and reconfigurability. The concept is targeted at software for recurring signal processing and control tasks common in industrial embedded supervision and control applications. An important part of the architecture concept is that the design work is partitioned and described at two major levels. The first level is focused on definition of data structures and reentrant data mapping functions to be supported by a restricted use of an existing programming language. The second level, i.e. the system level, focuses on structural and behavioral concerns including: component encapsulation, connection of actions and components via ports. This level, also handling delays, triggers and actors, is supported by a system modeling language. The thus partitioned approach makes the different design and engineering concerns well separated which simplifies both analysis and verification of functional and time behavioral correctness, compared to if they are mixed and intertwined into each other. Another gain with the proposed architecture concept is that the number of operating system (OS) threads and associated overhead needed to share the processor or a set of processors in a distributed or multi-core case is minimized.
机译:本文提出了一种架构概念,用于软件设计,用于嵌入式系统和协作嵌入式系统,旨在简化设计,还可以简化,还可以重用和重新配置。该概念针对用于经常性的信号处理和工业嵌入式监控应用中的信号处理和控制任务的软件。架构概念的一个重要部分是设计工作是在两个主要层面进行分区和描述的。第一级别专注于通过限制使用现有编程语言的限制使用数据结构和重圈数据映射函数的定义。第二级,即系统级别,侧重于结构和行为问题,包括:组件封装,通过端口连接操作和组件。该级别也通过系统建模语言支持处理延迟,触发器和演员。如此分区的方法使得不同的设计和工程涉及良好的分离,其简化了与彼此混合并交织在一起的功能和时间行为正确性的分析和验证。具有所提出的架构概念的另一个增益是,操作系统(OS)线程的数量和在分布式或多核心箱中共享处理器或一组处理器所需的关联开销是最小化的。

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