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Redundancy scheduling with scaled Bernoulli service requirements

机译:冗余调度较缩放的Bernoulli服务要求

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Redundancy scheduling has emerged as a powerful strategy for improving response times in parallel-server systems. The key feature in redundancy scheduling is replication of a job upon arrival by dispatching replicas to different servers. Redundant copies are abandoned as soon as the first of these replicas finishes service. By creating multiple service opportunities, redundancy scheduling increases the chance of a fast response from a server that is quick to provide service and mitigates the risk of a long delay incurred when a single selected server turns out to be slow. The diversity enabled by redundant requests has been found to strongly improve the response time performance, especially in the case of highly variable service requirements. Analytical results for redundancy scheduling are unfortunately scarce however, and even the stability condition has largely remained elusive so far, except for exponentially distributed service requirements. In order to gain further insight in the role of the service requirement distribution, we explore the behavior of redundancy scheduling for scaled Bernoulli service requirements. We establish a sufficient stability condition for generally distributed service requirements, and we show that, for scaled Bernoulli service requirements, this condition is also asymptotically nearly necessary. This stability condition differs drastically from the exponential case, indicating that the stability condition depends on the service requirements in a sensitive and intricate manner.
机译:冗余调度已成为在并行服务器系统中改进响应时间的强大策略。冗余调度中的关键特征是在抵达时通过调度副本到达不同的服务器时复制作业。一旦第一个复制品完成服务,就会抛弃冗余副本。通过创建多个服务机会,冗余调度增加了从快速提供服务的服务器的快速响应的可能性,并减轻单个所选服务器变为慢时发生的长延迟的风险。已经发现冗余请求启用的多样性强烈提高了响应时间性能,特别是在高度可变服务要求的情况下。然而,冗余调度的分析结果是稀缺的,甚至迄今为止稳定条件甚至难以难以困境,除了指数分布的服务要求。为了进一步了解服务需求分配的作用,我们探讨了尺寸伯努利服务要求的冗余调度的行为。我们为一般分布式服务要求建立了足够的稳定条件,我们表明,对于缩放的Bernoulli服务要求,这种情况也渐近几乎需要。这种稳定性条件与指数壳体大致不同,表明稳定性条件以敏感和复杂的方式取决于服务要求。

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