利用时空相关性的分布式视频解码系数恢复:一种线性规划方法

Mortuza Ali, M. Murshed
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引用次数: 2

摘要

相对于现有视频编码标准的高复杂度编码,分布式视频编码(DVC)旨在实现低复杂度编码。根据Wyner-Ziv定理,这可以在一定条件下通过对帧进行独立编码而采用联合解码来实现。然而,Wyner-Ziv编码方案的性能在很大程度上取决于它对视频的时空相关性的了解。不幸的是,视频中的相关统计数据沿空间和时间方向变化很大。因此,我们认为在无反馈变换域DVC方案中,解码器将无法以非零概率恢复所有的变换系数。因此,我们建议将恢复方法与解码器集成,旨在通过利用视频的时空相关性来恢复未解码的系数。此外,我们扩展和修改了最近在图像背景下提出的DVC恢复方案,以便在恢复解解码系数时利用空间和时间相关性。该方案的核心思想是将恢复问题化为一个线性优化问题,并利用线性规划有效地求解。仿真结果表明,该方案能够显著改善DVC解码器产生的错误视频帧的PSNR和视觉质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Undecoded Coefficients Recovery in Distributed Video Coding by Exploiting Spatio-Temporal Correlation: A Linear Programming Approach
Distributed video coding (DVC) aims at achieving low-complexity encoding in contrast to the existing video coding standards' high complexity encoding. According to the Wyner-Ziv theorem this can be achieved, under certain conditions, by independent encoding of the frames while resorting to joint decoding. However, the performance of a Wyner-Ziv coding scheme significantly depends on its knowledge about the spatio-temporal correlation of the video. Unfortunately, correlation statistics in a video widely varies both along the spatial and temporal directions. Therefore, we argue that in a feedback free transform domain DVC scheme the decoder will fail to recover all the transform coefficients with a nonzero probability. Thus, we suggest to integrate a recovery method with the decoder that aims at recovering the undecoded coefficients by exploiting the spatio-temporal correlation of the video. Besides, we extend and modify a recovery scheme, recently proposed in the context of images, for DVC so that it exploits both spatial and temporal correlations in recovering the undecoded coefficients. The essential idea of this scheme is to formulate the recovery problem as a linear optimization problem which can be solved efficiently using linear programming. Our simulation results demonstrated that the proposed scheme can significantly improve the PSNR and visual quality of the erroneous video frames produced by a DVC decoder.
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