关于点对点媒体流

Dongyan Xu, M. Hefeeda, Susanne E. Hambrusch, B. Bhargava
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引用次数: 291

摘要

本文研究了一种具有以下特点的点对点媒体流系统:(1)其流容量动态增长;(2)对等体不表现出类似服务器的行为;(3)对等体的带宽贡献是异构的;(4)每个流会话可能涉及多个提供对等体。基于这些特点,我们研究了两个问题:(1)如何在一个流会话中将媒体数据分配给多个提供的对等体;(2)如何快速扩大系统的总流容量。我们对第一个问题的解决方案是一个最优的媒体数据分配算法OTS/sub p2p/,该算法在随后的流会话中产生最小的缓冲延迟。我们对第二个问题的解决方案是分布式差异化准入控制协议DAC/sub p2p/。通过区分不同出站带宽的请求节点,DAC/sub p2p/实现了系统容量的快速放大;在准入率、等待时间和缓冲延迟方面对所有请求节点有利;并为同伴提供真正可用的出站带宽创造了激励。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On peer-to-peer media streaming
In this paper, we study a peer-to-peer media streaming system with the following characteristics: (1) its streaming capacity grows dynamically; (2) peers do not exhibit server-like behavior; (3) peers are heterogeneous in their bandwidth contribution; and (4) each streaming session may involve multiple supplying peers. Based on these characteristics, we investigate two problems: (1) how to assign media data to multiple supplying peers in one streaming session and (2) how to quickly amplify the system's total streaming capacity. Our solution to the first problem is an optimal media data assignment algorithm OTS/sub p2p/, which results in minimum buffering delay in the consequent streaming session. Our solution to the second problem is a distributed differentiated admission control protocol DAC/sub p2p/. By differentiating between requesting peers with different outbound bandwidth, DAC/sub p2p/ achieves fast system capacity amplification; benefits all requesting peers in admission rate, waiting time, and buffering delay; and creates an incentive for peers to offer their truly available out-bound bandwidth.
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