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Ergodicity and analysis of the process describing the system state in polling systems with two queues

机译:遍历和分析描述具有两个队列的轮询系统中系统状态的过程

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摘要

Consider a polling system of two queues served by a single server that visits the queues in cyclic order. The polling discipline in each queue is of exhaustive-type. and zero-switchover times are considered, We assume that the arrival times in each queue form a Poisson process and that the service times form sequences of independent and identically distributed random variables, except for the service distribution of the first customer who is served at each polling instant (the time in which the server moves from one queue to the other one), The sufficient and necessary conditions for the ergodicity of such polling system are established as well as the stationary distribution for the continuous-time process describing the state of the system. The proofs rely on the combination of three embedded processes that were previously used in the literature. An important result is that rho = 1 can imply ergodicity in one specific case, where rho is the typical traffic intensity for polling systems, and rho < 1 is the classical non-saturation condition, (c) 2004 Elsevier B.V. All rights reserved.
机译:考虑由单个服务器服务的两个队列的轮询系统,该服务器按循环顺序访问队列。每个队列中的轮询规则都是穷举型的。考虑零转移时间,我们假设每个队列中的到达时间形成一个泊松过程,并且服务时间形成独立且均等分布的随机变量的序列,但在每个队列中服务的第一个客户的服务分布除外轮询瞬间(服务器从一个队列移到另一队列的时间),建立了这种轮询系统遍历的充分和必要条件,以及描述该状态的连续时间过程的平稳分布。系统。证明依赖于文献中先前使用的三个嵌入式过程的组合。一个重要的结果是,在一种特定情况下,rho = 1可能暗示着遍历性,其中rho是轮询系统的典型流量强度,rho <1是经典的非饱和条件,(c)2004 Elsevier B.V.保留所有权利。

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