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Wave atoms for digital hologram compression

机译:数字全息图压缩的波原子

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摘要

Compression of macroscopic digital holograms is a major research problem, which if unresolved will continue to limit the possible applications of holography in multimedia contexts. The quest of searching for the most suitable representation for compression is still an open problem. In this work, we study sparsification by the wave atom transform, introduced in 2006 by Demanet et al., and experiment on four large-scale representative diffuse macroscopic holograms while testing compressibility in the object plane, Fourier plane, and defocused plane representations, respectively. We demonstrate that it is a suitable nonadaptive, sparsifying transform for Fourier or defocused content, and by integration into the wave atom coding (WAC) method, we sketch a full-fledged codec for the compression of macroscopic holograms. WAC is compared to two variants of JPEG 2000, with equal complexity of coding tools, and the more recent High Efficiency Video Coding (H.265/HEVC). For Fourier and defocused holograms, WAC outperforms the JPEG 2000 variants by 0.9-7.9 dB Biontegaard-Delta peak signal to noise ratio, especially in the former case, while it is as good as or better than even H.265/HEVC for very deep computer-generated holograms, thus improving on existing approaches. (C) 2019 Optical Society of America.
机译:压缩宏观数字全息图是一个重大的研究问题,如果未解决的情况将继续限制全电平地区的全能的可能应用。寻找最合适的压缩表示的任务仍然是一个开放的问题。在这项工作中,我们通过Demanet等人在2006年推出的Wave Atom Transform的稀疏,并分别在四个大型代表弥漫性宏观全息图上分别进行了四种大规模代表性漫射宏观全息图。 。我们证明它是傅立叶或离焦含量的合适的不适应变换,并通过集成到波原子编码(WAC)方法中,我们将一个全剥离的编解码器绘制为宏观全息图的压缩。将WAC与JPEG 2000的两个变体进行比较,具有相同的编码工具复杂性,以及最近的高效视频编码(H.265 / HEVC)。对于傅立叶和离焦的全息图,WAC优于JPEG 2000变体0.9-7.9 dB Biontegaard-Delta峰值信号到噪声比,特别是在前壳体中,而它与非常深的H.265 / HEVC一样好或更好计算机生成的全息图,从而改善了现有方法。 (c)2019年光学学会。

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