Optimization of retrial queue with unreliable servers subject to imperfect coverage and reboot delay

IF 2.3 2区 工程技术 Q3 ENGINEERING, INDUSTRIAL Quality Technology and Quantitative Management Pub Date : 2022-01-17 DOI:10.1080/16843703.2021.2020952
Tzu-Hsin Liu, Fu-Min Chang, J. Ke, S. Sheu
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引用次数: 9

Abstract

ABSTRACT A retrial queue with constant retrial policy, unreliable servers and the failed servers may not be detected is investigated in this paper. Upon arrival, a customer either is attended to one of the available servers or enters a retrial orbit and retries in a random time as all servers are not available. The unreliable server can be breakdown when he is working. The breakdown server may not be detected due to some fault matters. Under such a situation, the repair facility will issue a reboot operation to locate the non-detected breakdown server. Once the breakdown server is detected and located, he will be sent for repair. After utilizing the general theory of matrix-geometric approach to determine the stationary distribution, some performance measures are proposed. A single-objective model aiming at minimizing the average cost is constructed. We apply particle swarm optimization algorithm and genetic algorithm to find the optimum combination of parameters. We also formulate a bi-objective model aiming at minimizing the expect cost and the mean waiting time of customers in orbit. Two multi-objective algorithms are developed to solve it.
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具有不完全覆盖和重启延迟的不可靠服务器的重试队列优化
本文研究了一个具有恒定重试策略、不可靠服务器和可能无法检测到故障服务器的重试队列。到达后,客户要么使用其中一个可用服务器,要么进入重试轨道,并在随机时间内重试,因为所有服务器都不可用。不可靠的服务器在他工作时可能会坏掉。由于某些故障问题,可能无法检测到故障服务器。在这种情况下,修复设施将发出重新启动操作,以定位未检测到的故障服务器。一旦故障服务器被检测到并找到,他将被送去维修。在利用矩阵几何方法的一般理论确定平稳分布后,提出了一些性能指标。建立了一个以最小化平均成本为目标的单目标模型。我们应用粒子群优化算法和遗传算法来寻找参数的最佳组合。我们还建立了一个双目标模型,旨在最大限度地减少轨道上客户的预期成本和平均等待时间。开发了两个多目标算法来求解它。
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来源期刊
Quality Technology and Quantitative Management
Quality Technology and Quantitative Management ENGINEERING, INDUSTRIAL-OPERATIONS RESEARCH & MANAGEMENT SCIENCE
CiteScore
5.10
自引率
21.40%
发文量
47
审稿时长
>12 weeks
期刊介绍: Quality Technology and Quantitative Management is an international refereed journal publishing original work in quality, reliability, queuing service systems, applied statistics (including methodology, data analysis, simulation), and their applications in business and industrial management. The journal publishes both theoretical and applied research articles using statistical methods or presenting new results, which solve or have the potential to solve real-world management problems.
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