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Spatial and Temporal Adaptation of Interpolation Filter For Low Complexity Encoding/Decoding

机译:低复杂性编码/解码的插值滤波器的空间和时间调整

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Compared to video coding with non-adaptive interpolation filtering, adaptive filters achieve higher compression rations, with an increase in encoding and decoding complexity. In our earlier work, we significantly reduced the decoding complexities of adaptive filtering schemes with a minimal impact on the coding efficiency by making use of different filters and adapting them spatially and temporally [1]. However, our previous scheme required high encoder complexity, as several encoding passes per frame were needed to analyze the input image and optimize the selection of interpolation filters. In this paper, a novel algorithm that does not require multiple encoding passes, but still give similar or better performance is proposed. This is achieved by using a modified decision making function that does not require full reconstruction of coded frame and use motion and prediction information more efficiently. In addition, we generalized our previous scheme by introducing additional filters, so that better Rate-Distortion-Complexity tradeoffs are possible. Experimental results show that up-to 50-70% reduction in interpolation complexity is achieved, with less than 0.13dB penalty on coding efficiency.
机译:与具有非自适应插值滤波的视频编码相比,自适应滤波器实现更高的压缩率,随着编码和解码复杂性而增加。在我们之前的工作中,我们通过利用不同的滤波器并在空间上和暂时将它们调整它们来显着降低了自适应滤波方案的解码复杂性,并对编码效率进行了最小的影响[1]。然而,我们以前的方案需要高编码器复杂性,因为需要每帧的若干编码通过来分析输入图像并优化内插滤波器的选择。在本文中,提出了一种不需要多个编码通行证的新型算法,但仍然提供类似或更好的性能。这是通过使用不需要对编码帧的完全重建并更有效地使用运动和预测信息的修改决策功能来实现的。此外,我们通过引入额外的过滤器来推广我们以前的方案,以便更好的速率 - 失真复杂性权衡是可能的。实验结果表明,实现了内插复杂性的高达50-70%,对编码效率小于0.13dB。

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