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A joint source-channel coding approach to network transport of digital video

机译:数字视频网络传输的联合源通道编码方法

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The use of forward error-control (FEC) coding, possibly in conjunction with passive-error recovery techniques, has emerged as a promising approach for real-time video transport over ATM networks for cell-loss recovery and/or bit error correction, such as might be required for wireless links. Although FEC provides cell-loss recovery, through its erasure correcting capabilities, it also introduces transmission overhead which can possibly cause additional cell losses. A joint source-channel coding methodology is described to maximize the number of video sources multiplexed at a given quality of service (QoS), measured in terms of overall reproduced video quality. The transport channel is modeled as a block interference channel (BIC) and the multiplexer as a single server, deterministic service, finite buffer supporting N users. Based upon an information-theoretic characterization of the BIC and large deviation bounds on the buffer overflow probability, we describe a methodology that provides theoretically achievable upper limits on the number of sources multiplexed at a given level of performance. Performance of a specific coding technique using an MPEG-2 source encoder and interlaced non-binary Reed-Solomon (RS) channel codes is illustrated and shown to approach the information-theoretic predictions with increasing levels of complexity.
机译:使用前向错误控制(FEC)编码(FEC)编码,可能与被动错误恢复技术结合起来,它是对用于细胞丢失恢复和/或误码校正的ATM网络的实时视频传输的有希望的方法无线链接可能需要。虽然FEC通过其擦除校正能力提供细胞损失恢复,但它还引入了传输开销,这可能导致额外的单元损耗。描述了联合源通道编码方法来最大化在给定的服务质量(QoS)中复用的视频源的数量,以整体再现视频质量测量。传输信道被建模为块干扰通道(BIC)和多路复用器作为单个服务器,确定性服务,支持N个用户的有限缓冲区。基于BIC溢出概率的BIC和大偏差界限的信息 - 理论上,我们描述了一种方法,该方法提供了在给定的性能水平多路复用的源数上的理论上可实现的上限。示出了使用MPEG-2源编码器和隔行扫描非二进制簧片所罗门(RS)信道代码的特定编码技术的性能,并示出了利用增加的复杂性水平接近信息定理预测。

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