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In-Loop Noise-Filtered Prediction for High Efficiency Video Coding

机译:用于高效视频编码的环路内噪声滤波预测

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In this paper, we focus on optimization and enhancement of High Efficiency Video Coding (HEVC) with respect to professional applications. In most of the professional video applications, noise dominates the compression performance. We therefore theoretically and practically analyze the denoising performance of an HEVC codec and show that, especially for low to medium quantization parameters (QPs), the source noise is still present in the reconstructed frame. This motivates us to use an explicit in-loop reference frame denoising filter for this quality range. We show how the noise, which badly influences the prediction, can be modeled and estimated. Two approaches are introduced, in which either the noise is calculated from prior knowledge or estimated automatically without prior knowledge. A denoising filter that exploits the HEVC core transform is introduced. Finally, a coding mode adaptive scheme for motion compensation using the noise-filtered reference frame is described. The compression results show that especially for low to medium QP settings as well as lossless compression considerable bitrate savings can be achieved using the proposed schemes.
机译:在本文中,我们专注于针对专业应用的高效视频编码(HEVC)的优化和增强。在大多数专业视频应用中,噪声主导着压缩性能。因此,我们在理论上和实践上分析了HEVC编解码器的降噪性能,并表明,特别是对于中低量化参数(QP),源噪声仍然存在于重构帧中。这激励我们针对此质量范围使用显式环路内参考帧降噪滤波器。我们展示了如何严重影响预测的噪声可以被建模和估计。引入了两种方法,其中根据先验知识计算噪声或在没有先验知识的情况下自动估计噪声。介绍了一种利用HEVC核心变换的降噪滤波器。最后,描述了用于使用经噪声滤波的参考帧的运动补偿的编码模式自适应方案。压缩结果表明,特别是对于中低QP设置以及无损压缩,使用所提出的方案可以节省大量比特率。

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