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Allocation of service time in a two-server system

机译:两台服务器系统中的服务时间分配

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Consider a two-server FCFS queueing model where servers are arranged in series. All arrivals join the first service center where they receive a maximum of T units of service. Arrivals with service requirements that exceed the threshold T join the second queue where they receive their remaining service. We show that when the service requirements have hyper-exponential service times with large coefficient of variation our scheme provides better system performance than the standard two parallel server model in the sense of reducing the mean delay per customer in the system. Our model is likely to be useful in systems where high variability is a cause of performance degradation and where numerous service interruptions are not desirable. Scope and purpose: Reducing congestion is a primary concern in the design and analysis of queueing models, especially in systems where the distribution of service times is characterized by high variability. As an example consider a two server repair facility where job arrivals have one of two types of defects and where the type of defect is not known a priori. Each type of defect requires an exponential service, but with different service rate. Thus, the overall repair time has a hyper-exponential distribution. The purpose of this article is to present a model that is likely to be useful in systems where high variability is a cause of performance degradation. Our policy is to arrange servers in series and to service an arrival by the first server for a maximum of T units of service. Arrivals join the second queue, if necessary, where they receive their remaining service. It is shown that this simple scheme outperforms the standard two parallel server model.
机译:考虑一个两台服务器的FCFS排队模型,其中服务器按顺序排列。所有到达者都将加入第一个服务中心,在那里他们最多获得T个服务单元。服务要求超过阈值T的到达者将加入第二个队列,以接收剩余的服务。我们显示出,当服务需求的超指数服务时间具有较大的变异系数时,在减少系统中每个客户的平均延迟的意义上,我们的方案提供了比标准的两个并行服务器模型更好的系统性能。我们的模型可能会在高可变性导致性能下降且不希望出现大量服务中断的系统中很有用。范围和目的:减少拥塞是排队模型设计和分析的主要考虑因素,尤其是在服务时间分布具有高可变性的系统中。例如,考虑一个两台服务器维修设施,其中工作到达具有两种缺陷中的一种,并且缺陷的类型不是先验的。每种类型的缺陷都需要指数服务,但是服务速率不同。因此,总修复时间具有超指数分布。本文的目的是提供一个模型,该模型可能在高可变性导致性能下降的系统中很有用。我们的政策是串联安排服务器,并为第一台服务器的到来服务提供最多T个服务单元。必要时,到达者会加入第二个队列,在那里他们会收到剩余的服务。结果表明,该简单方案优于标准的两个并行服务器模型。

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