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Scheduling with bus access optimization for distributed embedded systems

机译:通过总线访问优化对分布式嵌入式系统进行调度

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In this paper, we concentrate on aspects related to the synthesis of distributed embedded systems consisting of programmable processors and application-specific hardware components. The approach is based on an abstract graph representation that captures, at process level, both dataflow and the flow of control. Our goal is to derive a worst case delay by which the system completes execution, such that this delay is as small as possible; to generate a logically and temporally deterministic schedule; and to optimize parameters of the communication protocol such that this delay is guaranteed. We have further investigated the impact of particular communication infrastructures and protocols on the overall performance and, specially, how the requirements of such an infrastructure have to be considered for process and communication scheduling. Not only do particularities of the underlying architecture have to be considered during scheduling but also the parameters of the communication protocol should be adapted to fit the particular embedded application. The optimization algorithm, which implies both process scheduling and optimization of the parameters related to the communication protocol, generates an efficient bus access scheme as well as the schedule tables for activation of processes and communications.
机译:在本文中,我们专注于与由可编程处理器和专用硬件组件组成的分布式嵌入式系统综合相关的方面。该方法基于抽象的图形表示,该图形表示在流程级别捕获数据流和控制流。我们的目标是得出系统完成执行的最坏情况延迟,以使此延迟尽可能小。生成逻辑上和时间上确定的时间表;并且优化通信协议的参数,以确保该延迟。我们进一步研究了特定的通信基础结构和协议对整体性能的影响,尤其是对于过程和通信调度,如何考虑此类基础结构的要求。在调度期间不仅必须考虑基础体系结构的特殊性,而且通信协议的参数也应进行调整以适合特定的嵌入式应用程序。该优化算法既意味着过程调度又是与通信协议有关的参数的优化,它会生成有效的总线访问方案以及用于激活过程和通信的调度表。

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