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首页> 外文期刊>Circuits and Systems for Video Technology, IEEE Transactions on >An Error Resilient Video Coding Scheme Using Embedded Wyner–Ziv Description With Decoder Side Non-Stationary Distortion Modeling
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An Error Resilient Video Coding Scheme Using Embedded Wyner–Ziv Description With Decoder Side Non-Stationary Distortion Modeling

机译:使用嵌入式Wyner-Ziv描述和解码器侧非平稳失真建模的错误弹性视频编码方案

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摘要

In this paper, we propose a generic error resilient video coding (ERVC) scheme using embedded Wyner–Ziv (WZ) description. At the encoder side, a joint source-channel R-D optimized mode selection (JSC-RDO-MS) algorithm with WZ-coded anchor frames is statistically studied and developed. Given a stationary first-order Markov Gaussian source, the proposed mode optimization is justified by an analysis of the RD impact on the WZ bit-rate. JSC-RDO-MS involves in the estimation of expected rate and distortion of WZ coding with the unavailable side information, and the WZ bit-rate of each coding mode is determined based on the error correction capability of the specific WZ codec. At the decoder side, an online correlation noise model between the source and the side-information is proposed with a mixture of Laplacians whose parameters are attained to reflect the coherence of the motion field of successive frames and the energy of prediction residual. Each mixture component represents the statistical distribution of prediction residuals, and the mixing coefficients represent the amount of errors in motion compensation. The proposed scheme achieves the so-called classification gain by exploiting the spatially non-stationary characteristics of the motion field and texture. Extensive experimental results show that the proposed WZ-ERVC scheme achieves a better overall RD performance than existing ERVC schemes, and the proposed modeling algorithm also significantly outperforms the conventional Laplacian model by up to 2 dB.
机译:在本文中,我们提出了一种使用嵌入式Wyner-Ziv(WZ)描述的通用容错视频编码(ERVC)方案。在编码器方面,对具有WZ编码锚帧的联合源通道R-D优化模式选择(JSC-RDO-MS)算法进行了统计研究和开发。给定一个稳定的一阶马尔可夫高斯源,通过分析RD对WZ比特率的影响来证明所提出的模式优化是合理的。 JSC-RDO-MS涉及使用不可用的辅助信息来估计WZ编码的预期速率和失真,并且基于特定WZ编解码器的纠错能力来确定每种编码模式的WZ比特率。在解码器侧,提出了一种混合了拉普拉斯算子的源和侧信息之间的在线相关噪声模型,拉普拉斯算子的参数可反映连续帧运动场的相干性和预测残差的能量。每个混合成分代表预测残差的统计分布,混合系数代表运动补偿中的误差量。所提出的方案通过利用运动场和纹理的空间非平稳特性来实现所谓的分类增益。大量的实验结果表明,所提出的WZ-ERVC方案比现有的ERVC方案具有更好的总体RD性能,并且所提出的建模算法也比传统的Laplacian模型明显提高了2 dB。

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