首页> 外文期刊>International journal of operations research and information systems >Analysis of Single Buffer Random Polling System With State-Dependent Input Process and Server/Station Breakdowns
【24h】

Analysis of Single Buffer Random Polling System With State-Dependent Input Process and Server/Station Breakdowns

机译:具有状态相关输入过程和服务器/站点故障的单缓冲区随机轮询系统分析

获取原文
获取原文并翻译 | 示例
           

摘要

Models and analytical techniques are developed to evaluate the performance of two variations of single buffers (conventional and buffer relaxation system) multiple queues system. In the conventional system, each queue can have at most one customer at any time and newly arriving customers find the buffer full are lost. In the buffer relaxation system, the queue being served may have two customers, while each of the other queues may have at most one customer. Thomas Y.S. Lee developed a state-dependent non-linear model of uncertainty for analyzing a random polling system with server breakdown/repair, multi-phase service, correlated input processes, and single buffers. The state-dependent non-linear model of uncertainty introduced in this paper allows us to incorporate correlated arrival processes where the customer arrival rate depends on the location of the server and/or the server's mode of operation into the polling model. The author allows the possibility that the server is unreliable. Specifically, when the server visits a queue, Lee assumes that the system is subject to two types of failures: queue-dependent, and general. General failures are observed upon server arrival at a queue. But there are two possibilities that a queue-dependent breakdown (if occurs) can be observed; (i) is observed immediately when it occurs and (ii) is observed only at the end of the current service. In both cases, a repair process is initiated immediately after the queue-dependent breakdown is observed. The author's model allows the possibility of the server breakdowns/repair process to be non-stationary in the number of breakdowns/repairs to reflect that breakdowns/repairs or customer processing may be progressively easier or harder, or that they follow a more general learning curve. Thomas Y.S. Lee will show that his model encompasses a variety of examples. He was able to perform both transient and steady state analysis. The steady state analysis allows us to compute several performance measures including the average customer waiting time, loss probability, throughput and mean cycle time.
机译:开发了模型和分析技术来评估单个缓冲区(传统缓冲区和缓冲区松弛系统)多队列系统的两种变体的性能。在传统系统中,每个队列在任何时候最多可以有一个客户,而新到达的客户发现缓冲区已满。在缓冲松弛系统中,正在服务的队列可能有两个客户,而其他每个队列最多可能有一个客户。托马斯Y.S. Lee开发了一种状态依赖的不确定性非线性模型,用于分析具有服务器故障/维修,多阶段服务,相关输入过程和单个缓冲区的随机轮询系统。本文介绍的基于状态的不确定性非线性模型使我们能够将相关的到达过程(其中客户到达率取决于服务器的位置和/或服务器的操作模式)纳入轮询模型。作者允许服务器不可靠。具体来说,当服务器访问队列时,Lee假定系统遭受两种类型的故障:与队列有关的故障和常规故障。在服务器到达队列时会观察到常规故障。但是有两种可能性可以观察到与队列有关的故障(如果发生): (i)发生时立即被观察到,并且(ii)仅在当前服务结束时被观察到。在这两种情况下,观察到与队列有关的故障后,都会立即启动修复过程。作者的模型允许服务器故障/修复过程在故障/修复数量上不固定的可能性,以反映出故障/修复或客户处理可能会变得越来越容易或更困难,或者它们遵循了更一般的学习曲线。托马斯Y.S. Lee将展示他的模型包含各种示例。他能够执行瞬态和稳态分析。稳态分析使我们能够计算几种性能指标,包括平均客户等待时间,损失概率,吞吐量和平均周期时间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号