Analysis of dual tandem queues with a finite buffer capacity and non-overlapping service times and subject to breakdowns

Kan Wu, Ning Zhao
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引用次数: 15

Abstract

Tandem queues with a finite buffer capacity are the common structures embedded in practical production systems. We study the properties of tandem queues with a finite buffer capacity and non-overlapping service times subject to time-based preemptive breakdowns. Different from prior aggregation and decomposition approaches, we view a tandem queue as an integrated system and develop an innovative approach to analyze the performance of a dual tandem queue through the insight from Friedman's reduction method. We show that the system capacity of a dual tandem queue with a finite buffer and breakdowns can be less than its bottleneck-sees-initial-arrivals system due to the existence of virtual interruptions. Furthermore, the virtual interruptions depend on job arrival rates in general. Approximate models are derived using priority queues and the concept of virtual interruptions.
有限缓冲容量、服务时间不重叠且易发生故障的双串联队列分析
具有有限缓冲容量的串联队列是实际生产系统中常见的嵌入式结构。研究了具有有限缓冲容量和服务时间不重叠的串列队列在基于时间的抢占故障下的性质。与先前的聚合和分解方法不同,我们将串联队列视为一个集成系统,并通过Friedman的约简方法开发了一种创新的方法来分析双串联队列的性能。我们证明了由于虚拟中断的存在,具有有限缓冲和故障的双串联队列的系统容量可以小于其瓶颈-初始到达系统。此外,虚拟中断通常取决于作业到达率。利用优先级队列和虚拟中断的概念推导了近似模型。
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
IIE Transactions
IIE Transactions 工程技术-工程:工业
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4.5 months
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