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Fluid polling systems

机译:流体轮询系统

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摘要

We study N-queues single-server fluid polling systems, where a fluid is continuously flowing into the queues at queue-dependent rates. When visiting and serving a queue, the server reduces the amount of fluid in the queue at a queue-dependent rate. Switching from queue i to queue j requires two random-duration steps: (ⅰ) departing queue i, and (ⅱ) reaching queue j. The length of time the server resides in a queue depends on the service regime. We consider three main regimes: Exhaustive, Gated, and Globally-Gated. Two polling procedures are analyzed: (ⅰ) cyclic and (ⅱ) probabilistic. Under steady-state, we derive the Laplace-Stieltjes transform (LST), mean, and second moment of the amount of flow at each queue at polling instants, as well as at an arbitrary moment. We further calculate the LST and mean of the "waiting time" of a drop at each queue and derive expressions for the mean total load in the system for the various service regimes. Finally, we explore optimal switching procedures.
机译:我们研究了N队列单服务器流体轮询系统,其中流体以与队列有关的速率连续流入队列。当访问并服务队列时,服务器以队列相关的速率减少队列中的流体量。从队列i切换到队列j需要两个随机持续时间步骤:(ⅰ)离开队列i,和(ⅱ)到达队列j。服务器驻留在队列中的时间长度取决于服务机制。我们考虑了三种主要机制:穷举,门控和全局门控。分析了两种轮询程序:(ⅰ)循环和(ⅱ)概率。在稳态下,我们推导了每个队列在轮询时刻以及任意时刻的流量的Laplace-Stieltjes变换(LST),均值和第二时刻。我们进一步计算LST和每个队列下降的“等待时间”的平均值,并得出系统中各种服务方式的平均总负载的表达式。最后,我们探索最佳切换程序。

著录项

  • 来源
    《Queueing systems》 |2009年第4期|401-435|共35页
  • 作者

    Omer Czerniak; Uri Yechiali;

  • 作者单位

    Department of Statistics and Operations Research, School of Mathematical Sciences, Tel Aviv University, Tel Aviv, Israel;

    Department of Statistics and Operations Research, School of Mathematical Sciences, Tel Aviv University, Tel Aviv, Israel Afeka College of Engineering, Tel Aviv, Israel;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    polling models; fluid; cyclic; probabilistic; workload; waiting times;

    机译:轮询模型;体液;循环概率工作量等待时间;

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