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Time-varying tandem queues with blocking: modeling, analysis, and operational insights via fluid models with reflection

机译:带阻塞的时变串联队列:通过带有反射的流体模型进行建模,分析和操作见解

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摘要

In this paper, we develop time-varying fluid models for tandem networks with blocking. Beyond having their own intrinsic value, these mathematical models are also limits of corresponding many-server stochastic systems. We begin by analyzing a two-station tandem network with a general time-varying arrival rate, a finite waiting room before the first station, and no waiting room between the stations. In this model, customers that are referred from the first station to the second when the latter is saturated (blocked) are forced to wait in the first station while occupying a server there. The finite waiting room before the first station causes customer loss and, therefore, requires reflection analysis. We then specialize our model to a single station (many-server fluid limit of the $$G_t/M/N/(N +H)$$ G t / M / N / ( N + H ) queue), generalize it to k stations in tandem, and allow finite internal waiting rooms. Our models yield operational insights into network performance, specifically on the effects of line length, bottleneck location, waiting room size, and the interaction among these effects.
机译:在本文中,我们开发了具有阻塞的串联网络的时变流体模型。这些数学模型除了具有自身的内在价值外,还受到相应的多服务器随机系统的限制。我们首先分析两站式串联网络,该网络具有通常的时变到达率,在第一个站之前有一个有限的等候室,而在两个站之间没有等候室。在此模型中,当第一个站点饱和(阻塞)时从第一个站点转到第二个站点的客户被迫在第一个站点中等待,同时占用那里的服务器。第一站前的有限等候室会导致客户流失,因此需要进行反射分析。然后,我们将模型专门化为单个站点($ G_t / M / N /(N + H)$$ G t / M / N /(N + H)队列的多服务器流体限制),将其推广为串联k个工作站,并允许有限的内部等候室。我们的模型可提供有关网络性能的运营洞察力,尤其是对线路长度,瓶颈位置,候车室大小以及这些影响之间相互作用的影响。

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