A new congestion control algorithm for layered multicast in heterogeneous multimedia dissemination

Qiang Liu, Jenq-Neng Hwang
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引用次数: 11

Abstract

Layered multicast is a promising technique for disseminating adaptive-quality audio/video to multiple heterogeneous receivers. Congestion control in a layered multicast scheme is very important to support heterogeneity and scalability. Previous works on congestion control use packet loss, delay, and receiving rate to infer whether there is spare capacity along the path, which suffers from slow convergence, lack of inter-session fairness or TCP-fairness, layer oscillations, and loss induced by the join experiments. In this paper, we propose a layered multicast bandwidth inference congestion (BlC) control, which use delay increasing trend detection to infer the spare capacity. The major contribution of this paper is introducing the source probe organization and effective spare capacity inference by delay trend detection algorithm. We evaluate BIC for a large variety of scenarios and show that it converges fast to the optimal link utilization and can adapt to network dynamics effectively. We also show that BIC is stable, inter-session fair and fair to competing TCP traffics.
一种新的异构多媒体传播分层组播拥塞控制算法
分层多播是一种很有前途的技术,用于向多个异构接收器传播自适应质量的音频/视频。分层组播方案中的拥塞控制对支持异构性和可扩展性非常重要。以前的拥塞控制工作使用丢包、延迟和接收速率来推断路径上是否有空闲容量,这受到收敛缓慢、缺乏会话间公平性或tcp -公平性、层振荡和join实验引起的损失的影响。本文提出了一种分层的组播带宽推断拥塞(BlC)控制方法,该方法利用延迟增加趋势检测来推断空闲容量。本文的主要贡献是通过延迟趋势检测算法引入源探测组织和有效的空闲容量推断。我们对多种场景下的BIC进行了评估,并表明它能快速收敛到最优链路利用率,并能有效地适应网络动态。我们还证明了BIC是稳定的,会话间公平的,并且对竞争的TCP流量公平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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