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Profit maximization in flexible serial queueing networks

机译:灵活的串行排队网络中的利润最大化

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We analyze the tradeoff between efficiency and service quality in tandem systems with flexible servers and finite buffers. We reward efficiency by assuming that a revenue is earned each time a job is completed, and penalize poor service quality by incorporating positive holding costs. We study the dynamic assignment of servers to tasks with the objective of maximizing the long-run average profit. For systems of arbitrary size, structured service rates, and linear or nonlinear holding costs, we determine the server assignment policy that maximizes the profit. For systems with two stations, two servers with arbitrary service rates, and linear holding costs, we show that the optimal server assignment policy is of threshold type and determine the value of this threshold as a function of the revenue and holding cost. The threshold can be interpreted as the best possible buffer size, and hence our results prove the equivalence of addressing service quality via a holding cost and via limiting the buffer size. Furthermore, we identify the optimal buffer size when each buffer space comes at a cost. We provide numerical results that suggest that the optimal policy also has a threshold structure for nonlinear holding costs. Finally, for larger systems with arbitrary service rates, we propose effective server assignment heuristics.
机译:我们在具有灵活服务器和有限缓冲区的串联系统中分析效率和服务质量之间的权衡。我们通过假设每次完成工作都会获得收入来奖励效率,并通过合并正的持有成本来惩罚服务质量差的问题。我们研究服务器对任务的动态分配,目的是最大化长期平均利润。对于任意大小,结构化服务费以及线性或非线性持有成本的系统,我们确定使利润最大化的服务器分配策略。对于具有两个站点,两个具有任意服务费率的服务器和线性持有成本的系统,我们表明最佳服务器分配策略是阈值类型,并根据收入和持有成本确定该阈值的值。该阈值可以解释为可能的最佳缓冲区大小,因此,我们的结果证明了通过保持成本和限制缓冲区大小来解决服务质量的问题。此外,当每个缓冲区空间需要付出代价时,我们会确定最佳缓冲区大小。我们提供的数值结果表明,最优策略也具有非线性持有成本的阈值结构。最后,对于具有任意服务费率的大型系统,我们提出了有效的服务器分配试探法。

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