A batch arrival retrial queuing system for essential and optional services with server breakdown and Bernoulli vacation

Madhu Jain, G. C. Sharma, Richa Sharma
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引用次数: 16

Abstract

This paper studies a general retrial M X /G/1 queue with an additional phase of second optional service and Bernoulli vacation where breakdowns occur randomly at any instant while servicing the customers. If an arriving batch finds that the server is busy in providing either first essential service (FES)/second optional service (SOS) or on vacation then arriving batch enters an orbit called retrial queue. Otherwise, one customer from arriving batch starts to be served by the server while the rest join the orbit. The vacation times and service times of both first essential and second optional services are assumed to be general distributed while the retrial times are exponential distributed. Introducing supplementary variables and by employing embedded Markov chain technique, we derive some important performance measures of the system such as average orbit size, average queue size, mean waiting time, expected lengths of busy period, etc. Numerical results have been facilitated to illustrate the effect of different parameters on several performance measures.
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具有服务器故障和伯努利假期的基本服务和可选服务的批量到达重审排队系统
本文研究了一类具有二次可选服务附加阶段和伯努利休假的一般再审M X /G/1队列,该队列在服务顾客时任意时刻随机发生故障。如果到达的批发现服务器忙于提供第一基本服务(FES)/第二可选服务(SOS)或正在休假,则到达的批将进入一个称为重试队列的轨道。否则,到达批中的一个客户将开始由服务器服务,而其余客户将加入轨道。假设第一必要服务和第二可选服务的休假时间和服务时间为一般分布,重审时间为指数分布。引入补充变量,利用嵌入式马尔可夫链技术,推导出了系统的一些重要性能指标,如平均轨道大小、平均队列大小、平均等待时间、期望繁忙时段长度等。数值结果有助于说明不同参数对几种性能指标的影响。
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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