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Robust sequential resource allocation in heterogeneous distributed systems with random compute node failures

机译:具有随机计算节点故障的异构分布式系统中的稳健顺序资源分配

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摘要

The problem of finding efficient workload distribution techniques is becoming increasingly important today for heterogeneous distributed systems where the availability of compute nodes may change spontaneously over time. Therefore, the resource-allocation policy must be designed to be robust with respect to absence and re-emergence of compute nodes so that the performance of the system is maximized. Such a policy is developed in this work, and its performance is evaluated on a model of a dedicated system composed of a limited set of heterogeneous Web servers. Assuming that each HTML request results in a rdquorewardrdquo if completed before its hard deadline, the goal is to maximize a cumulative reward obtained in the system. A failure rate for each server is set relatively high to simulate its operation under harsh conditions. The results demonstrate that the proposed approach based on the concepts of the Derman-Lieberman-Ross theorem outperforms other policies compared in our experiments for inconsistent, processor-consistent, and task-processor-consistent types of heterogeneity.
机译:对于异构分布式系统而言,寻找有效的工作负载分配技术的问题在今天变得越来越重要,在异构系统中,计算节点的可用性可能会随时间自发地发生变化。因此,必须将资源分配策略设计为相对于计算节点的缺失和重新出现具有鲁棒性,以便使系统的性能最大化。在这项工作中开发了这样的策略,并在由有限的一组异构Web服务器组成的专用系统的模型上评估了其性能。假设每个HTML请求如果在其硬期限之前完成就获得“回报”,则目标是使系统中获得的累积奖励最大化。将每个服务器的故障率设置得较高,以模拟其在恶劣条件下的运行。结果表明,基于Derman-Lieberman-Ross定理概念的提议方法在异质性类型不一致,处理器一致性和任务处理器一致性方面优于我们的实验中的其他策略。

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