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Coupled pre-/post-processing filters for predictive video coding

机译:耦合的预处理/后处理滤波器,用于预测视频编码

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Pre-/post-processing filters obtained from lapped transforms achieve higher coding efficiency by exploiting transform block boundary correlation. Existing approaches however do not explicitly consider the impact of pre-filtering on prediction efficiency, thereby resulting in a lower overall rate-distortion performance. We present a framework where filters are designed with an objective function based on a prediction model. The post-filter is constructed so as to reverse the pre-filter processing at the decoder. We show how the pre-filters thus derived can be refined and local adaptation parameters obtained for better compression efficiency. To further enhance the performance, the mode decision is altered by separating the contribution of luma and chroma components in the rate-distortion model. The overall system performance is measured using a weighted Bjontegaard delta bitrate, showing an overall saving of 2.58% to 6.78% with respect to the “Key Technical Area” (KTA) codec. Additionally, the designed filters significantly reduce the blocking artifacts observed in KTA.
机译:从重叠变换获得的预处理/后处理滤波器通过利用变换块边界相关性来实现更高的编码效率。然而,现有方法没有明确考虑预滤波对预测效率的影响,从而导致较低的整体速率失真性能。我们提出了一个框架,在该框架中,根据预测模型使用目标函数设计了过滤器。后滤波器被构造为使在解码器处的前滤波器处理反向。我们展示了如何对由此得出的预滤波器进行优化,并获得局部自适应参数以获得更好的压缩效率。为了进一步提高性能,通过在速率失真模型中分离亮度和色度分量的贡献来更改模式决策。整体系统性能是使用加权的比约加德(Bjontegaard)增量比特率测量的,相对于“关键技术领域”(KTA)编解码器而言,总体节省了2.58%至6.78%。此外,设计的滤波器大大减少了在KTA中观察到的阻塞伪影。

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