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Dynamic Flexible Queueing Network Models for the Design and Control of High Performance Operational Systems.

机译:用于设计和控制高性能操作系统的动态灵活排队网络模型。

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In this dissertation, we study the impact of efficient resource allocation policies on the performance of a variety of systems including service centers, manufacturing systems, and pharmaceutical distribution centers.;In Chapter II, we investigate the optimal server scheduling policy in service industries such as call centers and off-line information technology service centers. We model the system as a Markov Decision Process and analytically characterize the optimal server allocation and scheduling policy. We also propose an efficient heuristic to improve server scheduling with no need to solve the MDP formulation. Our computational results confirm the effectiveness of our heuristic as compared to other well-studied routing algorithms from the literature.;In Chapter III, we propose a new production line design framework for a U-shaped production system consisting of several stations and cross-trained workers. We address efficient line design principles to enhance the system's throughput while keeping the number of required skills per worker significantly lower. We design an extensive test suite and use simulation to show that the system we designed can achieve nearly the same level of throughput as a fully cross-trained system.;In Chapter IV, we present two-stage and three-stage stochastic network flow formulations to address the problem of deploying disease treatment in developing countries when the demand is uncertain. We find efficient distribution strategies that improve access to treatments at a minimum cost. We use demand data on the facility-based malaria treatment distribution provided by the Malawian Ministry of Health. We show that the proposed stochastic approaches can effectively reduce shortages and lower transportation costs.;Finally in Chapter V, we address the problem of routing incoming calls in an information technology service center with cross-trained servers and heterogeneous demand. Another important characteristic of the studied model is the fixed task completion deadline associated with each incoming service request. If the deadline is not met, a relatively large deadline violation penalty will be charged. To design and implement the proposed routing algorithm, we use real data from an industrial research partner. The simulation results confirm the effectiveness of the proposed routing heuristic in improving customer satisfaction by avoiding deadline violation.
机译:本文研究了有效的资源分配策略对包括服务中心,制造系统和药品配送中心在内的各种系统性能的影响。在第二章中,我们研究了服务行业中的最佳服务器调度策略,例如呼叫中心和离线信息技术服务中心。我们将系统建模为马尔可夫决策过程,并分析表征最佳服务器分配和调度策略。我们还提出了一种有效的启发式方法来改善服务器调度,而无需解决MDP公式。与文献中其他经过深入研究的路由算法相比,我们的计算结果证实了我们的启发式方法的有效性。在第三章中,我们为包含多个工位和交叉训练的U型生产系统提出了一种新的生产线设计框架工人。我们致力于有效的生产线设计原则,以提高系统的吞吐量,同时使每个工人所需的技能数量大大降低。我们设计了一个广泛的测试套件并通过仿真表明,我们设计的系统可以实现与完全交叉训练的系统几乎相同的吞吐量水平。在第四章​​中,我们介绍了两阶段和三阶段随机网络流量公式。解决在需求不确定时在发展中国家部署疾病治疗的问题。我们找到有效的分销策略,以最低的成本改善治疗的可及性。我们使用由马拉维卫生部提供的基于设施的疟疾治疗分布的需求数据。我们证明了所提出的随机方法可以有效地减少短缺并降低运输成本。最后,在第五章中,我们解决了在交叉训练的服务器和异构需求的信息技术服务中心中路由来电的问题。研究模型的另一个重要特征是与每个传入服务请求相关的固定任务完成期限。如果未达到最后期限,将收取相对较大的违反期限罚款。为了设计和实现建议的路由算法,我们使用了来自工业研究合作伙伴的真实数据。仿真结果证实了拟议的路由启发法通过避免违反截止日期来提高客户满意度的有效性。

著录项

  • 作者

    Parvin, Hoda.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Industrial.;Operations Research.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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