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Image Denoising Algorithm with a Three-dimensional Grid System of Coupled Nonlinear Elements

机译:具有耦合非线性元素三维网格系统的图像去噪算法

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This paper presents an image denoising algorithm with a three-dimensional grid system of coupled nonlinear elements. The system consists of a two-dimensional image grid and a one-dimensional grid representing a quantized image brightness. At each grid point, a FitzHugh-Nagumo type nonlinear element is placed and coupled with other elements placed at its nearest neighboring grid points. The FitzHugh-Nagumo element is described with a set of time-evolving ordinary differential equations, and is tuned to be excitable. When we externally stimulate the grid system with an image brightness distribution, we could observe that noise in the distribution was reduced and signal was strengthened as time proceeds. Thus, the image denoising algorithm utilizes this property of the grid system, in which we propose to modify external stimuli so as to have broad Gaussian distributions. We confirm performance of the algorithm on artificial and real images in comparison with two classical algorithms of a diffusion equation and median filtering.
机译:本文介绍了具有耦合非线性元件的三维网格系统的图像去噪算法。系统由二维图像网格和表示量化图像亮度的一维网格组成。在每个网格点处,将Fitzhugh-nagumo型非线性元件放置并与放置在其最近的相邻网格点处的其他元件耦合。 Fitzhugh-nagumo元素用一组时间不断发展的普通微分方程描述,并被调整为易于激发。当我们用图像亮度分布外部刺激电网系统时,我们可以观察到分配的噪声降低,并且随着时间的继续,加强了信号。因此,图像去噪算法利用电网系统的这种特性,其中我们建议改变外部刺激,以便具有广泛的高斯分布。与扩散方程和中值滤波的两个经典算法相比,我们确认了人工和真实图像算法的性能。

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