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A novel method of infrared image denoising and edge enhancement

机译:红外图像去噪与边缘增强的新方法

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摘要

Infrared images are characterized by small signal-to-noise ratio and low contrast thus making it much difficult to achieve infrared image denoising and edge enhancement. The paper proposes a novel method based on wavelet diffusion, which reduces noise in infrared images while enhancing and preserving edges. First, wavelet modulus and local singularity are combined into a joint conditional model to build an elementary edge map, then the edge map are updated with geometric consistency for better discrimination of edges. To enhancing edges simultaneously, forward and backward diffusion technique is introduced into wavelet diffusion. Finally, the equation of forward and backward diffusion is redesigned according to the new edge map. Experimental results demonstrate that the new proposed method can effectively realize infrared image denoising and edge enhancement.
机译:红外图像的特点是信噪比小,对比度低,因此很难实现红外图像的降噪和边缘增强。本文提出了一种基于小波扩散的新方法,该方法在增强和保留边缘的同时减少了红外图像中的噪声。首先,将小波模量和局部奇异性组合到一个联合条件模型中,以建立基本的边缘图,然后用几何一致性更新边缘图,以更好地区分边缘。为了同时增强边缘,在小波扩散中引入了前向和后向扩散技术。最后,根据新的边缘图重新设计了正向和反向扩散方程。实验结果表明,该方法可以有效地实现红外图像的去噪和边缘增强。

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