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Temporal Filter Design for Encoder-Oriented Video Generation Based on Bayesian Optimization

机译:基于贝叶斯优化的面向编码器视频生成的时间滤波器设计

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The acquisition rate of video equipment is advancing rapidly, for example, a video with Full-HD resolution can now be acquired at 1000 Hz. However, the acquisition process of imaging systems is independent from the video encoding process. The imaging system fails to utilize signals acquired at high temporal resolution in an attempt to improve video coding efficiency. This paper proposes a video generation algorithm that uses temporally over-sampled frames as input to produce a temporally down-sampled video signal optimized in terms of video encoding efficiency. The proposed method introduces an adaptive temporal filter whose filter coefficients are selected from adaptively generated set (called a dictionary) of candidates. As an extension of our previous work that studies filter coefficient selection from a fixed dictionary, the proposal of this paper designs the dictionary through Bayesian optimization. The proposed method makes it possible to jointly optimize the filter coefficient selection and the dictionary construction. Experiments show that the proposed method can reduce the encoding rate on average by 4.79 [%] compared to the constant mean-filter.
机译:视频设备的采集速率正在迅速提高,例如,现在可以以1000 Hz的频率采集具有Full-HD分辨率的视频。但是,成像系统的获取过程与视频编码过程无关。成像系统无法利用以高时间分辨率获取的信号来尝试提高视频编码效率。本文提出了一种视频生成算法,该算法使用时间过采样的帧作为输入,以生成在视频编码效率方面经过优化的时间下采样的视频信号。所提出的方法引入了自适应时间滤波器,其滤波器系数是从自适应生成的候选集合(称为字典)中选择的。作为我们以前研究固定字典中的滤波器系数选择的工作的扩展,本文的建议是通过贝叶斯优化设计字典的。所提出的方法使得可以共同优化滤波器系数选择和字典构造。实验表明,与恒定均值滤波器相比,该方法平均可将编码率降低4.79 [%]。

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