Recursive Solution of Queue Length Distribution for Geo/G/1 Queue with Delayed Min(N, D)-Policy

Yingyuan Wei, Yinghui Tang, Miaomiao Yu
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引用次数: 2

Abstract

Abstract In this paper we consider a discrete-time Geo/G/1 queue with delayed Min(N, D)-policy. Using renewal process theory, total probability decomposition technique and z-transform, we study the transient and equilibrium properties of the queue length from an arbitrary initial state, and obtain both the recursive expressions of the transient state queue length distribution and the steady state queue length distribution at arbitrary time epoch n+. Furthermore, we derive the important relations between equilibrium queue length distributions at different time epochs n–, n and n+. Finally, we give some numerical examples about capacity decision in queueing systems to demonstrate the application of the analytical results reported in this paper.
具有延迟最小(N, D)-策略的Geo/G/1队列长度分布的递推解
摘要考虑一类具有延迟Min(N, D)策略的离散时间Geo/G/1队列。利用更新过程理论、全概率分解技术和z变换,从任意初始状态出发,研究了队列长度的暂态和平衡性质,得到了任意时刻n+的暂态队列长度分布和稳态队列长度分布的递推表达式。此外,我们还推导出了n -、n和n+不同时间点的平衡队列长度分布之间的重要关系。最后,给出了排队系统容量决策的数值例子,以说明本文分析结果的应用。
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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