This paper proposes a new possible noise model and its application to Bayer color filter array (CFA). We studied effects of several noise models on three Bayer patterns. For instance, current Bayer CFA uses RGGB pattern which contains two green pixels, a red and a blue pixels in a pair. However, one may consider other color combinations such as RRGB or RGBB patterns. To investigate RGGB pattern's superiority, we research each pattern in different noise model and its level. We also studied how to generate noisy image from noisy-free image. In addition, conventional noise models do not consider white balance, gamma and tone correction issues. In this paper, we suggest adding such components in the model. Experimental results show that the new noise model is reasonable than the conventional ones.

Noise model analysis for sensor arrays / G. Jeon, M. Anisetti, W. Wu - In: The 7. International conference on signal processing, image processing and pattern recognition : SIP 2014 : 20-23 December 2014, Hainan Island, China : proceedingsLos Alamitos (California) : IEEE Computer society, 2014. - ISBN 9781479977697. - pp. 7-10 (( Intervento presentato al 7. convegno International conference on signal processing, image processing and pattern recognition (SIP) tenutosi a Hainan Island (China) nel 2014 [10.1109/SIP.2014.10].

Noise model analysis for sensor arrays

M. Anisetti
Secondo
;
2014

Abstract

This paper proposes a new possible noise model and its application to Bayer color filter array (CFA). We studied effects of several noise models on three Bayer patterns. For instance, current Bayer CFA uses RGGB pattern which contains two green pixels, a red and a blue pixels in a pair. However, one may consider other color combinations such as RRGB or RGBB patterns. To investigate RGGB pattern's superiority, we research each pattern in different noise model and its level. We also studied how to generate noisy image from noisy-free image. In addition, conventional noise models do not consider white balance, gamma and tone correction issues. In this paper, we suggest adding such components in the model. Experimental results show that the new noise model is reasonable than the conventional ones.
Settore INF/01 - Informatica
2014
Institute of electrical and electronics engineers
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/263589
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