A new parametric method for edge noise removal in graphical document images is presented using geometrical regularities of the graphics contours that exists in the images. Denoising is understood as a recovery problem and is done by employing a sparse representation framework with a basis pursuit denoising algorithm for denoising and curvelet frames for encoding directional information of the graphics contours. The optimal precision parameter used in this framework is shown to have linear relationship with the level of the noise. Experimental results show the superiority of the proposed method over existing ones in terms of image recovery and contour raggedness
The paper is concerned with the problem of image denoising for the case of grey-scale images. Such i...
ABSTARCT: Noise is undesired information that contaminates the image. In digital image processing, a...
Images may be corrupted by salt and pepper impulse noise due to noisy sensors or channel transmissio...
A new parametric method for edge noise removal in graphical document images is presented using geome...
This paper presents a new method to remove edge noise from graphical document images using geometric...
A degradation model that describes many image degradations produced by desktop scanning is used to s...
The edge detection techniques have to compromise between sensitivity and noise. In order for the mai...
Recently, libraries want to keep their book in a digital format, so they use an optical scanner to c...
(will be inserted by the editor) Sparsity-based edge noise removal from bilevel graphical document i...
We propose an edge adaptive digital image denoising and restoration scheme based on space dependent ...
Abstract—The objective of this work is to propose an image denoising technique and compare it with i...
The paper is concerned with the problem of image denoising for the case of grey-scale images. Such i...
Abstract:- This paper proposes a new algorithm for removal of impulse and random noise in color imag...
A new approach enables quantitative and qualitative characterization of varying edge noise even if t...
Abstract — When dealing with images, denoising is an inevitable preprocessing part. The key in denoi...
The paper is concerned with the problem of image denoising for the case of grey-scale images. Such i...
ABSTARCT: Noise is undesired information that contaminates the image. In digital image processing, a...
Images may be corrupted by salt and pepper impulse noise due to noisy sensors or channel transmissio...
A new parametric method for edge noise removal in graphical document images is presented using geome...
This paper presents a new method to remove edge noise from graphical document images using geometric...
A degradation model that describes many image degradations produced by desktop scanning is used to s...
The edge detection techniques have to compromise between sensitivity and noise. In order for the mai...
Recently, libraries want to keep their book in a digital format, so they use an optical scanner to c...
(will be inserted by the editor) Sparsity-based edge noise removal from bilevel graphical document i...
We propose an edge adaptive digital image denoising and restoration scheme based on space dependent ...
Abstract—The objective of this work is to propose an image denoising technique and compare it with i...
The paper is concerned with the problem of image denoising for the case of grey-scale images. Such i...
Abstract:- This paper proposes a new algorithm for removal of impulse and random noise in color imag...
A new approach enables quantitative and qualitative characterization of varying edge noise even if t...
Abstract — When dealing with images, denoising is an inevitable preprocessing part. The key in denoi...
The paper is concerned with the problem of image denoising for the case of grey-scale images. Such i...
ABSTARCT: Noise is undesired information that contaminates the image. In digital image processing, a...
Images may be corrupted by salt and pepper impulse noise due to noisy sensors or channel transmissio...