Plenoptic images and videos bearing rich information demand a tremendous amount of data storage and high transmission cost. While there has been much study on plenoptic image coding, investigations into plenoptic video coding have been very limited. We investigate the motion compensation for plenoptic video coding from a slightly different perspective by looking at the problem in the ray-space domain instead of in the conventional pixel domain. Here, we develop a novel motion compensation scheme for lenslet video under two sub-cases of ray-space motion, that is, integer ray-space motion and fractional ray-space motion. The proposed new scheme of light field motion-compensated prediction is designed such that it can be easily integrated into well-known video coding techniques such as HEVC. Experimental results compared to relevant existing methods have shown remarkable compression efficiency with an average gain of 19.63% and a peak gain of 29.1%.
翻译:虽然对光学图像编码进行了大量研究,但对光学视频编码的调查非常有限。我们对光学视频编码的动态补偿,我们从一个略有不同的角度,通过研究射线-空间域的问题而不是常规像素域的问题,对光学视频编码的动态补偿进行了调查。在这里,我们为射线-空间运动的两个子案例,即整形射线-空间运动和分光-空间运动,开发了一个对镜头视频的新型动作补偿方案。拟议的光场调整预测新方案的设计非常容易地纳入众所周知的视频编码技术,例如HEVC。 实验结果与现有相关方法相比,已经显示出惊人的压缩效率,平均收益为19.63%,最高收益为29.1%。