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Dynamic scheduling of open multiclass queueing networks in a slowly changing environment.

机译:在缓慢变化的环境中动态调度开放式多类排队网络。

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摘要

This thesis investigates the dynamic scheduling of computer communication networks that can be periodically overloaded. Such networks are modeled as multiclass queueing networks in a slowly changing environment. A hierarchy framework is established to search for a suitable scheduling policy for such networks through its connection with stochastic fluid models. In this work, the dynamic scheduling of a specific multiclass stochastic fluid model is studied first. Then, a bridge between the scheduling of stochastic fluid models and that of the queueing networks in a changing environment is established.; In the multiclass stochastic fluid model, the focus is on a system with two fluid classes and a single server whose capacity can be shared arbitrarily among these two classes. The server may be overloaded transiently and it is under a quality of service contract which is indicated by a threshold value of each class. Whenever the fluid level of a certain class is above the designated threshold value, the penalty cost is incurred to the server. The optimal and asymptotically optimal resource allocation policies are specified for such a stochastic fluid model.; Afterwards, a connection between the optimization of the queueing networks and that of the stochastic fluid models is established. This connection involves two steps. The first step is to approximate such networks by their corresponding stochastic fluid models with a proper scaling method. The second step is to construct a suitable policy for the queueing network through a successful interpretation of the stochastic fluid model solution, where the interpretation method is provided in this study.; The results developed in this thesis facilitate the process of searching for a nearly optimal scheduling policy for queueing networks in a slowly changing environment.
机译:本文研究了可以周期性超载的计算机通信网络的动态调度。在缓慢变化的环境中,此类网络被建模为多类排队网络。建立层次结构框架,以通过与随机流体模型的连接为此类网络搜索合适的调度策略。在这项工作中,首先研究特定的多类随机流体模型的动态调度。然后,在变化的环境中建立随机流体模型的调度和排队网络的调度之间的桥梁。在多类随机流体模型中,重点是具有两个流体类和一个服务器的系统,该服务器的容量可以在这两个类之间任意共享。服务器可能会暂时过载,并且处于服务质量合同之下,该合同由每个类别的阈值指示。只要某一类的液位高于指定的阈值,就会向服务器招致罚款。为这种随机流体模型指定了最优和渐近最优资源分配策略。然后,在排队网络的优化与随机流体模型的优化之间建立联系。此连接涉及两个步骤。第一步是使用适当的缩放方法通过它们对应的随机流体模型来近似这些网络。第二步是通过对随机流体模型解决方案的成功解释,为排队网络构建合适的策略,该研究中提供了解释方法。本文得出的结果有助于在缓慢变化的环境中为网络排队寻找几乎最佳的调度策略。

著录项

  • 作者

    Chang, Junxia.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Industrial.; Operations Research.; Mathematics.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 194 p.
  • 总页数 194
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;运筹学;数学;
  • 关键词

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