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Efficient Beltrami Filtering of Color Images Via Vector Extrapolation

机译:通过向量外推对彩色图像进行有效的Beltrami滤波

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摘要

The Beltrami image flow is an effective non-linear filter, often used in color image processing. It was shown to be closely related to the median, total variation, and bilateral filters. It treats the image as a 2D manifold embedded in a hybrid spatial-feature space. Minimization of the image area surface yields the Beltrami flow. The corresponding diffusion operator is anisotropic and strongly couples the spectral components. Thus, there is so far no implicit nor operator splitting based numerical scheme for the PDE that describes Beltrami flow in color. Usually, this flow is implemented by explicit schemes, which are stable only for very small time steps and therefore require many iterations. At the other end, vector extrapolation techniques accelerate the convergence of vector sequences, without explicit knowledge of the sequence generator. In this paper, we propose to use the minimum polynomial extrapolation (MPE) and reduced rank extrapolation (RRE) vector extrapolation methods for accelerating the convergence of the explicit schemes for the Beltrami flow. Experiments demonstrate their stability and efficiency compared to explicit schemes.
机译:Beltrami图像流是一种有效的非线性滤波器,通常在彩色图像处理中使用。它显示与中位数,总变化和双边过滤器密切相关。它将图像视为嵌入在混合空间特征空间中的2D流形。图像区域表面的最小化产生Beltrami流。相应的扩散算子是各向异性的,并且会强烈耦合光谱分量。因此,到目前为止,对于以彩色描述贝尔特拉米流的PDE,没有基于隐式或基于运算符分解的数值方案。通常,此流程是通过显式方案实现的,显式方案仅在很小的时间步中稳定,因此需要多次迭代。另一方面,向量外推技术可加速向量序列的收敛,而无需明确了解序列生成器。在本文中,我们建议使用最小多项式外推法(MPE)和降阶秩外推法(RRE)矢量外推法来加速Beltrami流显式方案的收敛。实验证明了其与显式方案相比的稳定性和效率。

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