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Analysis of a fork/join station with inputs from a finite population subnetwork with multi-server stations

机译:使用具有多服务器站点的有限人口子网络的输入来分析前叉/联接站点

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摘要

Forks/join stations are commonly used to model synchronization constraints in queuing networks. This paper presents an exact analysis of a fork/join station with inputs from stations composed of multiple exponential servers. The queue length process at the input buffers is analyzed exactly using the underlying Markov process. The semi-Markov kernel characterizing the departure process is analyzed to derive expressions for the marginal and joint distributions of inter-departure times from the fork/join station. These analyses are used to study the effect of inputs from multiple servers on key performance measures at a fork/join station. Comparison studies show that inputs from multiple servers have a significant effect on performance measures such as throughput, synchronization delays and queue lengths at the individual buffers. These insights are important to obtain better representation of synchronization constraints in closed queuing network models of computer networks, fabrication/assembly systems and material control strategies for manufacturing systems.
机译:叉/联接站通常用于对排队网络​​中的同步约束进行建模。本文使用由多个指数服务器组成的工作站的输入,对分叉/联接工作站进行了精确分析。使用底层的马尔可夫过程可以精确分析输入缓冲区的队列长度过程。分析了表征出发过程的半马尔可夫核,以得出叉/联接站出发时间的边际和联合分布的表达式。这些分析用于研究来自多台服务器的输入对叉/联接站关键性能指标的影响。比较研究表明,来自多个服务器的输入对性能度量有显着影响,例如吞吐量,同步延迟和各个缓冲区的队列长度。这些见解对于在计算机网络,制造/装配系统和制造系统的材料控制策略的封闭排队网络模型中获得更好的同步约束表示很重要。

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