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Optimal Task Reallocation in Heterogeneous Distributed Computing Systems with Age-Dependent Delay Statistics

机译:具有年龄相关延迟统计信息的异构分布式计算系统中的最优任务重新分配

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This paper presents a general framework for optimal task reallocation in heterogeneous distributed-computing systems and offers a rigorous analytical model for the stochastic execution time of a workload. The model takes into account the heterogeneity and stochastic nature of the tasks' service and transfer times, servers' failure times, as well as an arbitrary task-reallocation policy. The stochastic service, transfer and failure times are assumed to have general, age-dependent (non-exponential) distributions, resulting in a tandem distributed queuing system with non-Markovian dynamics. Auxiliary age variables are introduced in the analysis to capture the memory associated with the non-Markovian stochastic times, thereby enabling a regenerative age-dependent analytical characterization of the statistics of the execution time of a workload. The model is utilized to devise task reallocation policies that optimize three metrics: the average execution time of a workload, the quality-of-service in executing a workload by a prescribed deadline and the reliability in executing a workload. Implications of the non-exponential event times on these metrics are also studied. Key results are verified experimentally on a distributed-computing testbed.
机译:本文提出了一种在异构分布式计算系统中优化任务重新分配的通用框架,并为工作负载的随机执行时间提供了严格的分析模型。该模型考虑了任务服务和传输时间,服务器的故障时间以及任意任务重新分配策略的异构性和随机性。假定随机服务,转移和故障时间具有一般的,与年龄相关的(非指数)分布,从而形成具有非马尔可夫动力学的串联分布排队系统。在分析中引入了辅助年龄变量,以捕获与非马尔可夫随机时间相关的内存,从而可以对工作负载的执行时间进行统计,并根据年龄进行再生分析。该模型用于设计任务重新分配策略,以优化三个指标:工作负载的平均执行时间,在规定的期限内执行工作负载的服务质量以及执行工作负载的可靠性。还研究了非指数事件时间对这些指标的影响。关键结果在分布式计算测试床上进行了实验验证。

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