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A retrial system with two input streams and two orbit queues

机译:具有两个输入流和两个轨道队列的重试系统

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Two independent Poisson streams of jobs flow into a single-server service system having a limited common buffer that can hold at most one job. If a type-ⅰ job (ⅰ = 1, 2) finds the server busy, it is blocked and routed to a separate type-ⅰ retrial (orbit) queue that attempts to re-dispatch its jobs at its specific Poisson rate. This creates a system with three dependent queues. Such a queueing system serves as a model for two competing job streams in a carrier sensing multiple access system. We study the queueing system using multi-dimensional probability generating functions, and derive its necessary and sufficient stability conditions while solving a Riemann-Hilbert boundary value problem. Various performance measures are calculated and numerical results are presented. In particular, numerical results demonstrate that the proposed multiple access system with two types of jobs and constant retrial rates provides incentives for the users to respect their contracts.
机译:两个独立的泊松作业流流入具有有限公共缓冲区的单服务器服务系统,该缓冲区最多只能容纳一个作业。如果类型为ⅰ的作业(ⅰ= 1、2)发现服务器繁忙,则会将其阻塞并路由到另一个类型为ⅰ的重试(轨道)队列,尝试以其特定的Poisson速率重新分配其作业。这将创建一个具有三个从属队列的系统。这种排队系统用作载波侦听多路访问系统中两个竞争作业流的模型。我们使用多维概率生成函数研究排队系统,并在解决黎曼-希尔伯特边值问题的同时导出其必要和充分的稳定性条件。计算了各种性能指标并给出了数值结果。尤其是,数值结果表明,所提出的具有两种类型的工作和恒定的重试率的多址访问系统为用户遵守合同提供了动力。

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