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Transport layer protocol design for multimedia wireless/wired networks.

机译:多媒体无线/有线网络的传输层协议设计。

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摘要

With the increasing demand for Internet access anywhere, anytime, the Internet and wireless cellular systems will converge to a ubiquitous information transport infrastructure. Future proliferation of hybrid wireless/wired networks depends on its ability to support heterogeneous multimedia applications. Unlike traditional data applications, multimedia applications have stringent delay constraint. How to efficiently support multimedia applications with Quality of Service (QoS) provisioning over hybrid networks is a very challenging task. Since the dominant transport layer protocol over the Internet, TCP, cannot meet the challenge, we are motivated to redesign and re-engineer the transport layer protocol to efficiently support multimedia applications over hybrid networks.; In this dissertation, we propose an Additive Increase and Multiplicative Decrease (AIMD) Protocol for multimedia applications. The proposed protocol inherits the AIMD congestion control mechanism of TCP Unlike TCP, the sender is not obligated to retransmit lost packets, since multimedia applications prefer timely delivery service to fully reliable services and end-to-end retransmissions may introduce intolerable delay. In addition, instead of TCP's increase-by-one or decrease-by-half control strategy, a pair of parameters can be flexibly chosen by applications according to their throughput smoothness requirements. By analyzing the competitive behaviors of AIMD-controlled flows and TCP-controlled flows, we derive a necessary and sufficient TCP-friendly condition for the parameter pair, such that AIMD flows can fairly share link bandwidth with coexisting AIMD and TCP flows, independent of the link capacity and the number of coexisting flows.; Then, we develop a novel analytical framework for quantifying the performance of AIMD flows in hybrid networks, in terms of flow throughput, packet loss rate, and delay distribution. Based on the analytical results, the AIMD protocol parameters can be fine-tuned with the consideration of the QoS requirements and the wireless link profile. Since our approach requires only the exchange of parameters among the application, the transport layer protocol and the link layer protocol, it preserves the end-to-end semantics of the transport layer protocol and the layered-structure of the Internet.; Extensive simulations have been conducted to confirm the efficacy of the analysis and demonstrate the feasibility of our approach. It has been shown that the AIMD protocol can appropriately regulate multimedia traffic to efficiently utilize the wireless links and fairly share the Internet resources with coexisting TCP flows in a distributed manner. More importantly, the protocol can provide satisfactory QoS to heterogeneous multimedia applications over hybrid wireless wired networks.; With satisfactory QoS provisioning, the end-systems have more incentives to voluntarily regulate multimedia traffic with the congestion-controlled AIMD protocol, which is vital for stability, integrity, and continuous growth of next generation networks.
机译:随着随时随地对Internet访问的需求不断增长,Internet和无线蜂窝系统将融合为无处不在的信息传输基础结构。混合无线/有线网络的未来发展取决于其支持异构多媒体应用程序的能力。与传统的数据应用程序不同,多媒体应用程序具有严格的延迟约束。如何通过混合网络上的服务质量(QoS)设置有效地支持多媒体应用程序是一项非常具有挑战性的任务。由于Internet上占主导地位的传输层协议TCP无法应对挑战,因此我们有动机重新设计和重新设计传输层协议,以有效地支持混合网络上的多媒体应用。本文提出了一种多媒体应用的加减乘积协议。所提出的协议继承了TCP的AIMD拥塞控制机制。与TCP不同,发送方没有义务重发丢失的数据包,因为多媒体应用程序更喜欢及时的交付服务而不是完全可靠的服务,并且端到端的重传可能会导致无法忍受的延迟。此外,代替TCP的增一或减半控制策略,应用程序可以根据它们的吞吐量平滑性要求灵活地选择一对参数。通过分析AIMD控制流和TCP控制流的竞争行为,我们得出参数对的必要且充分的TCP友好条件,以使AIMD流可以与AIMD和TCP流共存,公平地共享链路带宽,而与链路容量和共存流的数量;然后,我们开发了一种新颖的分析框架,用于根据流吞吐量,丢包率和延迟分布来量化混合网络中AIMD流的性能。根据分析结果,可以考虑QoS要求和无线链路配置文件来微调AIMD协议参数。由于我们的方法仅需要在应用程序,传输层协议和链路层协议之间交换参数,因此它保留了传输层协议的端到端语义以及Internet的分层结构。已经进行了广泛的模拟,以确认分析的有效性并证明我们方法的可行性。已经表明,AIMD协议可以适当地调节多媒体流量,以有效地利用无线链路,并以分布式方式与共存的TCP流公平地共享Internet资源。更重要的是,该协议可以为混合无线有线网络上的异构多媒体应用提供令人满意的QoS。通过令人满意的QoS设置,终端系统有更多的动机来通过拥塞控制的AIMD协议来自愿调节多媒体流量,这对于下一代网络的稳定性,完整性和持续增长至关重要。

著录项

  • 作者

    Cai, Lin.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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