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Geometric methods for wavelet-based image compression

机译:基于小波的图像压缩的几何方法

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Natural images can be viewed as combinations of smooth regions, textures, and geometry. Wavelet-based image coders, such as the space-frequency quantization (SFQ) algorithm, provide reasonably efficient representations for smooth regions (using zerotrees, for example) and textures (using scalar quantization) but do not properly exploit the geometric regularity imposed on wavelet coefficients by features such as edges. In this paper, we develop a representation for wavelet coefficients in geometric regions based on the wedgelet dictionary, a collection of geometric atoms that construct piecewise-linear approximations to contours. Our wedgeprint representation implicitly models the coherency among geometric wavelet coefficients. We demonstrate that a simple compression algorithm combining wedgeprints with zerotrees and scalar quantization can achieve near-optimal rate-distortion performance D(R) ~ (log R)~2/R~2 for the class of piecewise-smooth images containing smooth C~2 regions separated by smooth C~2 discontinuities. Finally, we extend this simple algorithm and propose a complete compression framework for natural images using a rate-distortion criterion to balance the three representations. Our Wedgelet-SFQ (WSFQ) coder outperforms SFQ in terms of visual quality and mean-square error.
机译:可以将自然图像视为平滑区域,纹理和几何形状的组合。基于小波的图像编码器,例如空间频率量化(SFQ)算法,可以为平滑区域(例如,使用零树)和纹理(使用标量量化)提供合理有效的表示,但不能正确利用施加在小波上的几何规律性诸如边缘之类的特征的系数。在本文中,我们基于楔形小波字典开发了几何区域中小波系数的表示,楔形小波字典是构成轮廓的分段线性近似的几何原子的集合。我们的楔形图表示形式隐式地模拟了几何小波系数之间的相干性。我们证明了一种结合楔形图和零树和标量量化的简单压缩算法,对于包含平滑C〜的分段平滑图像,可以实现接近最优的速率失真性能D(R)〜(log R)〜2 / R〜2。 2个区域由光滑的C〜2不连续点隔开。最后,我们扩展了这个简单的算法,并提出了使用速率失真准则来平衡这三种表示的自然图像的完整压缩框架。我们的Wedgelet-SFQ(WSFQ)编码器在视觉质量和均方误差方面均优于SFQ。

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