并行处理系统中功能块仿真的计算周期最小化

Hee-Jun Park, Byung Kook Kim
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摘要

本文的研究目的是在考虑通信争用和路由延迟的情况下,在一般网络结构下,开发计算周期最小的最优任务调度算法。我们提出了新的调度思想:(i)允许重叠两个不同迭代的个体开始,(ii)表示可行调度的调度空间和调度图,以及(iii)利用开始时间差与计算周期的性质的检查扩散算法。通过调度空间、段和调度的具体实例,我们证明了单独启动减少了计算周期,并且我们的算法可以找到最优的启动时间差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computing period minimization for function-block simulation in parallel processing systems
The aim of our research is to develop the optimal task scheduling algorithm that minimizes the computing period in general network structures considering communication contention and routing delay. We present new ideas of scheduling: (i) the individual start that allows overlapping two different iterations, (ii) the scheduling space and the scheduling graph that represent feasible schedules, and (iii) the check-and-diffusion algorithm utilizing property of the start-time difference vs. The computing period. With concrete examples of scheduling spaces, segments, and schedules, we show that individual start reduces the computing period, and our algorithm can find the optimal start-time difference.
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