球面轻量数据隐藏在360度视频与等矩形投影

D. Tran, H. Zepernick
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引用次数: 6

摘要

在本文中,我们提出了一种用于360度球面和平面之间等矩形投影视频的球形轻量级数据隐藏技术。特别地,将计算效率高的最低有效位(LSB)数据隐藏应用于球体的彩色编码等矩形投影。由于观看者将更多的注意力放在360度视频的赤道周围区域而不是两极,因此LSB数据隐藏可以在两极周围区域进行,而不会导致感知上显著的质量下降。此外,等矩形投影在极点附近的区域产生了大量的数据冗余,从而增加了LSB数据隐藏的可用容量。利用加权球均匀峰值信噪比(WS-PSNR)和卡斯特抛物投影峰值信噪比(pcp -PSNR)对所提出的球形轻量数据隐藏技术进行了性能评估。由于这两个指标都考虑了球面上的样本和映射到平面上的样本之间的非线性关系,因此它们非常适合于评估球面LSB数据隐藏技术的性能。给出了360度覆盖视频使用不同位平面数携带秘密视频的场景的数值结果。结果表明,只要在极点周围区域进行LSB数据隐藏,在360度隐写视频中,WS-PSNR和pcp - psnr的视频保真度确实保持较高。
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Spherical Light-Weight Data Hiding in 360-Degree Videos With Equirectangular Projection
In this paper, we propose a spherical light-weight data hiding technique for 360-degree videos with equirectangular projection between sphere and plane. In particular, computationally efficient least significant bit (LSB) data hiding is applied to the color encoded equirectangular projection of the sphere. As viewers put more attention to the areas around the equator of a 360-degree video compared to the poles, LSB data hiding may be performed in the regions around the poles without causing perceptually significant quality degradation. In addition, the equirectangular projection induces a huge amount of data redundancy in the areas near the poles which increases the capacity available for LSB data hiding. A performance assessment of the proposed spherical light-weight data hiding technique is conducted using the weighted-to-spherically-uniform peak-signal-to-noise ratio (WS-PSNR) and the Craster parabolic projection PSNR (CPP-PSNR). Because both metrics take the non-linear relationship between samples on the sphere and the samples mapped to the plane into account, they are well suited for assessing the performance of the spherical LSB data hiding technique. Numerical results are provided for scenarios in which a 360-degree cover video carries a secret video using different numbers of bit planes. It is shown that video fidelity in terms of WS-PSNR and CPP-PSNR is indeed kept high in the 360-degree stego-video as long as the LSB data hiding is performed in the areas around the poles.
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