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Robust transmission of packet-based H.264/AVC video with data partitioning over DS-CDMA wireless channels

机译:基于数据包的H.264 / AVC视频的强大传输与DS-CDMA无线通道的数据划分

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In this paper, we address the problem of robust transmission of packet based H.264/AVC video over direct sequence-code division multiple access (DS-CDMA) channels. H.264 based data partitioning is used to produce video packets of unequal importance with regards to their need in terms of the decoded video quality. In the proposed transmission system, the data partitioned video packets are packetized as per IP/UDP/RTP protocol stack and are sorted into different levels for giving unequal error protection (UEP) using Rate Compatible Punctured Convolutional (RCPC) codes. Constant size framing is done at the link layer and Cyclic Redundancy Check header (CRC) is attached for error detection. Link layer buffering and packet interleaving schemes are proposed to improve the efficiency of the system. A multipath Rayleigh fading channel with Additive White Gaussian Noise (AWGN) and interference from other users is considered at the physical layer. The link layer frames are channel encoded, spread and transmitted over the channel. The received data is despread/demodulated using the Auxiliary Vector (AV) filter or RAKE matched filter (RAKE-MF) receiver and subsequently channel and source decoded. Our experimental results show the effectiveness of using data partitioning for wireless transmissions when compared to the system not using data partitioning. Also the superior interference mitigation capabilities of AV receiver is shown in comparison to the RAKE-MF receiver.
机译:在本文中,我们解决了基于分组的H.264 / AVC视频通过直接序列码分多址(DS-CDMA)信道的鲁棒传输问题。基于H.264的数据分区用于在对解码的视频质量方面产生不平等重要性的视频数据包。在所提出的传输系统中,数据分区视频分组被IP / UDP / RTP协议栈分组,并使用速率兼容的卷积卷积(RCPC)代码来分类为不同的误差保护(UEP)。恒定尺寸框架在链路层完成,循环冗余校验标题(CRC)附加错误检测。提出了链路层缓冲和分组交错方案以提高系统的效率。在物理层中考虑了具有添加性白色高斯噪声(AWGN)的多径瑞利衰落通道和其他用户的干扰。链路层帧是编码,扩展和通过信道传输的信道。接收的数据使用辅助矢量(AV)滤波器或耙匹配的滤波器(Rake-MF)接收器以及随后的通道和源解码来解扩/解调。我们的实验结果表明,与不使用数据分区的系统相比,使用数据分区的有效性。除了Rake-MF接收器相比,还示出了AV接收器的卓越干扰减轻能力。

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