Exponential Single Server Queues in an Interactive Random Environment

Q1 Mathematics
Sonja Otten, Ruslan K. Krenzler, H. Daduna, K. Kruse
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引用次数: 1

Abstract

We consider exponential single server queues with state-dependent arrival and service rates that evolve under influences of external environments. The transitions of the queues are influenced by the environment’s state and the movements of the environment depend on the status of the queues (bidirectional interaction). The environment is constructed in a way to encompass various models from the recent Operations Research literature, where a queue is coupled with an inventory or with reliability issues. With a Markovian joint queueing-environment process, we prove separability for a large class of such interactive systems; that is, the steady state distribution is of product form and explicitly given. The queue and the environment processes decouple asymptotically and in steady state. For nonseparable systems, we develop ergodicity and exponential ergodicity criteria via Lyapunov functions. By examples we explain principles for bounding departure rates of served customers (throughputs) of nonseparable systems by throughputs of related separable systems as upper and lower bound.
交互式随机环境中的指数单服务器队列
我们考虑了在外部环境影响下发展的具有状态相关到达率和服务率的指数单服务器队列。队列的转换受环境状态的影响,环境的移动取决于队列的状态(双向交互)。该环境的构建方式涵盖了最近运筹学文献中的各种模型,其中队列与库存或可靠性问题相结合。利用马尔可夫联合排队环境过程,我们证明了一大类这样的交互系统的可分性;也就是说,稳态分布是乘积形式的,并且是明确给出的。队列和环境过程在稳态下渐近解耦。对于不可分离系统,我们通过李雅普诺夫函数发展了遍历性和指数遍历性准则。通过例子,我们解释了用相关可分离系统的吞吐量作为上界和下界来约束不可分离系统中服务客户的出发率(吞吐量)的原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Stochastic Systems
Stochastic Systems Decision Sciences-Statistics, Probability and Uncertainty
CiteScore
3.70
自引率
0.00%
发文量
18
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