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Performance modeling of FEC-based unequal error protection forrnH.264/AVC video streaming over burst-loss channels

机译:基于FEC的不等错误保护的性能建模,用于突发损失信道上的rnH.264 / AVC视频流

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摘要

Unequal error protection systems are a popular technique for video streaming. Forward error correction (FEC) is one of error control techniques to improve the quality of video streaming over lossy channels. Moreover, frame-level FEC techniques have been proposed for video streaming because of different priority video frames within the transmission rate constraint on a Bernoulli channel. However, various communication and storage systems are likely corrupted by bursts of noise in the current wireless behavior. If the burst losses go beyond the protection capacity of FEC, the efficacy of FEC can be degraded. Therefore, our proposed model allows an assessment of the perceived quality of H.264/AVC video streaming over bursty channels, and is validated by simulation experiments on the NS-2 network simulator at a given estimate of the packet loss ratio and average burst length. The results suggest a useful reference in designing the FEC scheme for video applications, and as the video coding and channel parameters are given, the proposed model can provide a more accurate evaluation tool for video streaming over bursty channels and help to evaluate the impact of FEC performance on different burst-loss parameters. Copyright (C) 2014 John Wiley & Sons, Ltd.
机译:不平等的错误保护系统是一种流行的视频流技术。前向纠错(FEC)是一种错误控制技术,旨在提高有损通道上视频流的质量。而且,由于在伯努利信道上的传输速率约束内的不同优先级视频帧,已经提出了用于视频流的帧级FEC技术。但是,各种通信和存储系统很可能会因当前无线行为中的突发噪声而损坏。如果突发损失超出FEC的保护能力,则FEC的功效可能会降低。因此,我们提出的模型允许评估突发信道上H.264 / AVC视频流的感知质量,并通过NS-2网络模拟器上的模拟实验在给定的丢包率和平均突发长度估计的情况下进行了验证。 。结果为设计视频应用的FEC方案提供了有用的参考,并且在给出了视频编码和信道参数的情况下,该模型可为突发信道上的视频流提供更准确的评估工具,并有助于评估FEC的影响。不同突发损失参数的性能。版权所有(C)2014 John Wiley&Sons,Ltd.

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