Protocols for distributed video streaming

Thinh P. Q. Nguyen, A. Zakhor
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引用次数: 34

Abstract

With the explosive growth of video applications over the packet switched networks, many approaches have been proposed to stream video effectively over packet switched, best-effort networks. In our previous work, we proposed a framework with a receiver driven protocol to coordinate simultaneous video streaming from multiple senders to a single receiver in order to achieve higher throughput, and to increase tolerance to packet loss and delay due to network congestion. The receiver-driven protocol employs two algorithms: the rate allocation and packet partition. The rate allocation algorithm determines the sending rate for each sender while the packet partition algorithm ensures no sender sends the same packets, and at the same time, minimizes the probability of late packets. We extend the rate allocation scheme to be used with forward error correction (FEC) in order to minimize the probability of packet loss in a bursty loss environment such as one due to network congestion. Using both simulations and actual Internet experiments, we demonstrate the effectiveness of our rate allocation scheme in reducing packet loss, and hence, achieving higher visual quality for the streamed video.
分布式视频流协议
随着视频应用在分组交换网络上的爆炸性增长,人们提出了许多方法来在分组交换、尽力而为的网络上有效地传输视频。在我们之前的工作中,我们提出了一个带有接收器驱动协议的框架,以协调从多个发送者到单个接收器的同时视频流,以实现更高的吞吐量,并增加对网络拥塞导致的数据包丢失和延迟的容忍度。接收方驱动协议采用两种算法:速率分配算法和分组算法。速率分配算法确定每个发送方的发送速率,分组算法保证每个发送方都发送相同的报文,同时最大限度地降低延迟报文的概率。我们将速率分配方案扩展到前向纠错(FEC)中,以便在突发丢失环境(如网络拥塞)中最小化丢包的概率。通过模拟和实际的互联网实验,我们证明了我们的速率分配方案在减少数据包丢失方面的有效性,从而为流媒体视频获得更高的视觉质量。
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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