Unequal error protection of H.264 Scalable Video Coding using discrete wavelet transfrom within a lognormal shadowing environment

Andrew Morcos, T. Elshabrawy
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Abstract

In this paper, Unequal Error Protection (UEP) is applied to a proposed Scalable Video Coding (SVC) amendment to the H.264/AVC standard. The proposed SVC framework uses Discrete Wavelet Transform (DWT) as a hierarchically signal decomposition for multi-resolution analysis and H.264/AVC as a source coding and compression technique. The output streams are divided into four streams with different priorities. UEP is applied in two different dimensions, the first dimension is defined under the video scalability and the second dimension gives higher priority to I-frames over P-frames. UEP is realized using a combination of Hierarchical Quadrature Amplitude Modulation (H-QAM) and Forward Error Correction (FEC) based on Rate Compatible Punctured Convolutional Codes (RCPC). A method to find the optimal selection of parameters for the H-QAM and the rate used by the RCPC is proposed to achieve a certain predefined quality of service based on the received SNR distribution due to lognormal shadowing within the network cell. Simulation results show that the proposed UEP scheme outperforms the Equal Error Protection (EEP) for low SNR values while minimizing as much as possible the loss for higher SNR users and thus achieving a better quality of service.
对数正态阴影环境下使用离散小波变换的H.264可伸缩视频编码的不等错误保护
本文将不等错误保护(UEP)应用于H.264/AVC标准的可扩展视频编码(SVC)修正案中。提出的SVC框架使用离散小波变换(DWT)作为多分辨率分析的分层信号分解,并使用H.264/AVC作为源编码和压缩技术。输出流被分成四个优先级不同的流。UEP应用于两个不同的维度,第一个维度是在视频可扩展性下定义的,第二个维度给予i帧比p帧更高的优先级。UEP是基于兼容速率的穿孔卷积码(RCPC)的分层正交调幅(H-QAM)和前向纠错(FEC)相结合实现的。提出了一种基于网络单元内对数正态阴影导致的接收信噪比分布,寻找H-QAM和RCPC所用速率参数的最佳选择方法,以实现一定的预定义服务质量。仿真结果表明,该方案在低信噪比情况下优于等错误保护(EEP)方案,同时在高信噪比情况下尽可能减少损失,从而获得更好的服务质量。
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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