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Rate-control for conversational H.264 video communication in heterogeneous networks

机译:异构网络中会话H.264视频通信的速率控制

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摘要

The transmission bit rate available along a communication path in a heterogeneous network is highly variable. The wireless link quality may vary due to interference and fading phenomena and, peered with radio layer reconfiguration and link layer protection mechanisms, lead to varying error rates, latencies, and, most importantly, changes in the available bit rate. And in both fixed and wireless networks, varying amounts of cross traffic from other nodes (i.e., the total offered load on the individual links of a network path) may lead to fluctuations in queue size (reflected again in a path latency) and to congestion (reflected in packet drops from router quenes). Senders have to adapt dynamically to these network conditions and adjust their sending rate and possibly other transmission parameters (such as encoding or redundancy) to match the available bit rate while maximizing the media quality perceived at the receiver. We investigate congestion indicators and their characteristics in different multimedia environments. Taking these characteristics into account, we propose a rate-adaptation algorithm that works in the following environments: a) Mobile-Mobile, b) Internet-Internet and c) Heterogeneous, Mobile-Internet scenarios. Using metrics such as Peak Signal-to-Noise Ratio (PSNR), loss rate, bandwidth utilization and fairness, we compare the algorithm with other rate-control algorithms for conversational video communication.
机译:异构网络中沿通信路径可用的传输比特率是高度可变的。无线链路质量可能由于干扰和衰落现象而变化,并且与无线电层重新配置和链路层保护机制相对应,导致变化的误码率,等待时间,最重要的是,可用比特率的变化。并且在固定和无线网络中,来自其他节点的交叉流量的变化量(即,网络路径的各个链路上提供的总负载)可能导致队列大小波动(再次反映在路径延迟中)并导致拥塞(反映在路由器队列的数据包丢弃中)。发送方必须动态适应这些网络条件,并调整其发送速率和其他可能的传输参数(例如编码或冗余),以匹配可用的比特率,同时使接收方感知的媒体质量最大化。我们研究了不同多媒体环境中的拥塞指标及其特征。考虑到这些特征,我们提出了一种速率适配算法,该算法可在以下环境中工作:a)移动-移动,b)Internet-Internet和c)异构,移动-Internet方案。使用诸如峰值信噪比(PSNR),丢失率,带宽利用率和公平性之类的指标,我们将该算法与用于会话视频通信的其他速率控制算法进行了比较。

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  • 作者

    Singh Varun Ranjit;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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