A task duplication based scheduling algorithm for heterogeneous systems

S. Ranaweera, D. Agrawal
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引用次数: 162

Abstract

Optimal scheduling of tasks of a directed acyclic graph (DAG) onto a set of processors is a strong NP-hard problem. In this paper we present a scheduling scheme called TDS to schedule tasks of a DAG onto a heterogeneous system. This models a network of workstations, with processors of varying computing power. The primary objective of this scheme is to minimize schedule length and scheduling time itself. The existing task duplication based scheduling scheme is primarily done for totally homogeneous systems. We compare the performance of this algorithm with an existing scheduling scheme for heterogeneous processors called BIL. In initial simulations TDS has been observed to generate scheduling lengths shorter than that of BIL, for communication-to-computation cost ratios (CCR) of 0.2 to 1. Moreover TDS is far more superior than BIL as far as scheduling time is concerned.
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基于任务复制的异构系统调度算法
有向无环图(DAG)任务在一组处理器上的最优调度是一个强np困难问题。本文提出了一种称为TDS的调度方案,将DAG的任务调度到异构系统上。它模拟了一个工作站网络,具有不同计算能力的处理器。该方案的主要目标是最小化调度长度和调度时间本身。现有的基于任务复制的调度方案主要针对完全同构的系统。我们将该算法的性能与现有的异构处理器调度方案(称为BIL)进行比较。在最初的模拟中观察到,当通信与计算成本比(CCR)为0.2比1时,TDS产生的调度长度比BIL短。而且就调度时间而言,TDS远优于BIL。
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