Performance issues of task routing and task scheduling with resequencing in homogeneous distributed systems

A. Karageorgos, H. Karatza
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引用次数: 4

Abstract

An important part of a distributed system design is the workload sharing among the processors. This includes partitioning the arriving jobs into tasks that can be executed in parallel, assigning the tasks to processors and scheduling the task execution on each processor. In many system contexts, jobs must depart in the order of their arrival, hence the resequence problem is involved. We examine the efficiency of two task routing strategies-one static and one adaptive-and three non preemptive task scheduling policies in conjunction with job resequencing before departure. It is shown that the adaptive task routing strategy outperforms the static one and that when adaptive task routing is applied, the scheduling strategy affects marginally system performance. The minimum resequence delay is achieved with probabilistic task routing and FCFS task scheduling.
同构分布式系统中带重排序的任务路由和任务调度性能问题
分布式系统设计的一个重要部分是处理器之间的工作负载共享。这包括将到达的作业划分为可以并行执行的任务,将任务分配给处理器,并在每个处理器上调度任务执行。在许多系统上下文中,作业必须按照它们到达的顺序离开,因此涉及到重新排序问题。我们研究了两种任务路由策略(一种静态路由策略和一种自适应路由策略)以及三种非抢占式任务调度策略在出发前与任务重排序相结合的效率。结果表明,自适应任务路由调度策略优于静态任务路由调度策略,且自适应任务路由调度策略对系统性能影响不大。利用概率任务路由和FCFS任务调度实现了最小的重排序延迟。
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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