DocumentCode :
618479
Title :
Random valued impulse denoising using robust direction based detector
Author :
Prathiba, K. ; Rathi, Rahul ; Christopher, C. Seldev
Author_Institution :
Ponjesly Coll. of Eng., Vettoornimadam, India
fYear :
2013
fDate :
11-12 April 2013
Firstpage :
1237
Lastpage :
1242
Abstract :
Impulse noise is a spark that affects the contents of digital images. It also occurs during image acquisition, transmission due to malfunctioning of pixel elements in the camera sensors, faulty memory locations, timing errors in analog to digital conversion and bit errors during transmission. Removal of impulse noise involves detection followed by filtering mechanism. There are two types of impulse noise namely Salt and pepper impulse noise and Random valued impulse noise. Among them, random valued noise is difficult to detect. Among existing detection methods, most of them provide good results for low noise density images. Few methods deals with high density noise and provide less visual quality. In this paper, we propose a new detector; Robust Direction based Detector (RDD) which is based on ROR (Robust Outlyingness Ratio) and Standard Deviation (SD). Based on the ROR, the pixels are classified into noisy and noise free pixels. Then, different decision rules are adopted on the corrupted pixels again based on standard deviation. Then the corrupted pixels are filtered by using Edge Strength Interpolation Algorithm.
Keywords :
analogue-digital conversion; cameras; error statistics; fault location; filtering theory; image classification; image denoising; image sensors; impulse noise; interpolation; visual communication; RDD; ROR; SD; analog to digital conversion; camera sensor; decision rule; digital imaging; edge strength interpolation algorithm; faulty memory location; filtering mechanism; image acquisition; image classification; image transmission; impulse noise removal; pepper impulse noise; pixel element malfunctioning; random valued impulse denoising; random valued impulse noise; robust direction based detector; robust outlyingness ratio; salt impulse noise; standard deviation; timing error; Detectors; Image edge detection; Noise; Noise measurement; Robustness; Standards; Vectors; Interpolation; Random valued noise; Standard deviation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information & Communication Technologies (ICT), 2013 IEEE Conference on
Conference_Location :
JeJu Island
Print_ISBN :
978-1-4673-5759-3
Type :
conf
DOI :
10.1109/CICT.2013.6558290
Filename :
6558290
Link To Document :
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