网格计算容错调度的资源映射策略分析

Shafi Jindal, R. Bansal, S. Bansal
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引用次数: 0

摘要

由于作业执行过程中遇到的失败,网格环境面临重大挑战。网格基础设施必须具有处理故障的机制,同时还要为其最终用户提供高效可靠的服务。因此,在这种环境下容错是不容忽视的。本文提出了两种网格容错调度策略:最大映射策略(MMS)和精确映射策略(EMS)。当调度程序有作业要调度时,MMS和EMS分别根据作业需求值与资源能力值的最大合适映射和精确映射来选择资源。如果在执行过程中出现故障,则根据资源的故障率使用最后保存的状态重新调度作业。EMS方法是有效的,因为所有资源在同一时间都很忙,以便更好地利用资源,并且Make-span(即所有作业完成处理所需的时间)也减少了。与MMS相比,由于负载几乎均匀地分布在资源之间,因此由于速度、内存和带宽导致的故障较少,因此EMS中的故障率降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of resource mapping strategies for fault tolerant scheduling on grid computing
Grid environment has significant challenges due to failures encountered during job execution. Grid infrastructure must have mechanisms to deal with faults while also providing efficient and reliable services to its end users. Therefore fault tolerance in such an environment could not be ignored. In this paper, two strategies such as Maximum Mapping Strategy (MMS) and Exact Mapping Strategy (EMS) are proposed for fault tolerant job scheduling in grid. Whenever the scheduler has jobs to schedule, MMS and EMS selects the resources based on the maximum suitable mapping and exact mapping of job requirement value with the resource capable value respectively. If failure occurs during execution, re-schedules the jobs using the last saved state according to the failure rate of the resources. EMS approach is effective in the sense that all resources are busy at the same time so that resources are utilized in better way and Make-span i.e. the time taken by all jobs to be finished processing is also reduced. Failure rate is reduces in EMS because failures due to speed and memory and bandwidth is less as load is distributed almost equally among resources compared to MMS.
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