Embedded coding of optical flow fields for scalable video compression

Sean I. Young, R. Mathew, D. Taubman
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引用次数: 4

Abstract

An embedded coding scheme for dense motion (optical flow) fields is proposed. Such a scheme is particularly useful in scalable video compression where one must compensate for inter-frame motion at various visual qualities and resolutions. However, the high cost of coding such fields has often made this option prohibitive. Using our previously developed `breakpoint'-adaptive wavelet transform, we show that it is possible to code dense motion fields efficiently while simultaneously endowing the coded motion representation with embedded resolution and quality scalability attributes. Performance comparisons with the traditional non-scalable block-based model are also made and presented with the aid of a modified H.264/AVC JM reference encoder.
用于可扩展视频压缩的光流场嵌入编码
提出了一种密集运动(光流)场的嵌入式编码方案。这种方案在可扩展的视频压缩中特别有用,因为必须在各种视觉质量和分辨率下补偿帧间运动。然而,对这些字段进行编码的高成本常常使这种选择难以实现。使用我们之前开发的“断点”自适应小波变换,我们表明可以有效地编码密集运动场,同时赋予编码运动表示嵌入分辨率和质量可扩展性属性。在改进的H.264/AVC JM参考编码器的帮助下,与传统的不可扩展的基于块的模型进行了性能比较。
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