A bi-criteria scheduling heuristic for distributed embedded systems under reliability and real-time constraints

I. Assayad, A. Girault, Hamoudi Kalla
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引用次数: 102

Abstract

Multi-criteria scheduling problems, involving optimization of more than one criterion, are subject to a growing interest. In this paper, we present a new bi-criteria scheduling heuristic for scheduling data-flow graphs of operations onto parallel heterogeneous architectures according to two criteria: first the minimization of the schedule length, and second the maximization of the system reliability. Reliability is defined as the probability that none of the system components will fail while processing. The proposed algorithm is a list scheduling heuristics, based on a bi-criteria compromise function that introduces priority between the operations to be scheduled, and that chooses on what subset of processors they should be scheduled. It uses the active replication of operations to improve the reliability. If the system reliability or the schedule length requirements are not met, then a parameter of the compromise function can be changed and the algorithm re-executed. This process is iterated until both requirements are met.
可靠性和实时性约束下分布式嵌入式系统的双准则调度启发式算法
多准则调度问题,涉及多个准则的优化,受到越来越多的兴趣。本文提出了一种新的双准则调度启发式算法,根据调度长度最小化和系统可靠性最大化两个准则对并行异构体系结构上的操作数据流图进行调度。可靠性被定义为系统组件在处理过程中不发生故障的概率。所提出的算法是一种列表调度启发式算法,基于双标准折衷函数,该函数引入要调度的操作之间的优先级,并选择应该调度的处理器子集。它通过主动复制操作来提高可靠性。如果不满足系统可靠性或调度长度要求,则可以更改折衷函数的一个参数,重新执行算法。这个过程不断迭代,直到两个需求都得到满足。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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