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Protocol design for ATM networks: Theory and implementation.

机译:ATM网络的协议设计:理论和实现。

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摘要

Asynchronous Transfer Mode (ATM) has generated new challenging problems for computer network designers. One of the challenges lies in the efficient management of ATM traffic so that the communication bandwidth of the network can be optimally utilized. This dissertation addresses both practical and theoretical issues in ATM. In particular, two aspects of ATM networks are discussed: the theoretical foundation on how to provide multicast services and "intelligent congestion control" for traffic management.; In many networking applications, it is essential for a process to disseminate the same piece of information to other processes. One of the main contributions in this dissertation is to establish new optimality results on the message complexity of fault-tolerant broadcast/multicast protocols, in which the processes are subject to crash, sending, and receiving omission failures. The new insights provided in the lower bound proofs further yield a graph-theoretic characterization of all message-optimal protocols in failure-free executions. These characterizations for reliable broadcast/multicast protocols in failure-free executions are also the first known in the literature.; Since data applications usually require a service that dynamically shares the available bandwidth among all active users, such a service is referred to as a best-effort or available bit rate (ABR) service. Despite considerable past research efforts in the area of congestion control in high speed networks, there were major limitations in the existing control schemes for ABR service. To address the problems, this dissertation proposed a novel traffic management technique, which is now referred to as "intelligent congestion control" by the ATM Forum, and has been adopted as the standard approach to congestion control of ABR service.; This dissertation also addresses the fundamental limitations of all end-to-end congestion control schemes for ABR service. These results will help us design schemes that are theoretically best possible and consider the trade-offs among various parameters such as transient period, maximum queue length, and link utilization. After considering the issues on providing unicast ABR service, we present the first unified approach to transform almost all existing congestion control algorithms for unicast ABR service into corresponding algorithms for multicast service.
机译:异步传输模式(ATM)为计算机网络设计人员带来了新的挑战性问题。挑战之一在于对ATM流量的有效管理,以便可以最佳地利用网络的通信带宽。本文针对自动柜员机的实际和理论问题进行了探讨。特别是,讨论了ATM网络的两个方面:如何提供多播服务的理论基础和用于流量管理的“智能拥塞控制”。在许多网络应用程序中,一个过程必须将同一条信息传播给其他过程,这一点至关重要。本文的主要贡献之一是针对容错广播/组播协议的消息复杂度建立了新的最优性结果,该过程具有崩溃,发送和接收遗漏失败的可能。下界证明中提供的新见解进一步实现了无故障执行中所有消息最佳协议的图形理论表征。在无故障执行中用于可靠的广播/多播协议的这些特征也是文献中首次公开的。由于数据应用程序通常需要在所有活动用户之间动态共享可用带宽的服务,因此该服务称为尽力而为或可用比特率(ABR)服务。尽管过去在高速网络的拥塞控制领域进行了大量研究工作,但现有的ABR服务控制方案仍存在重大局限。为了解决这些问题,本文提出了一种新颖的流量管理技术,现在被ATM论坛称为“智能拥塞控制”,并已被用作ABR服务拥塞控制的标准方法。本文还解决了ABR服务所有端到端拥塞控制方案的基本局限性。这些结果将帮助我们设计理论上最佳的方案,并考虑各种参数(例如瞬态周期,最大队列长度和链路利用率)之间的权衡。在考虑了提供单播ABR服务的问题后,我们提出了第一种统一的方法,将几乎所有现有的单播ABR服务的拥塞控制算法转换为相应的多播服务算法。

著录项

  • 作者

    Tzeng, Hong-Yi Henry.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Engineering Electronics and Electrical.; Engineering System Science.; Computer Science.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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