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디모자이킹을 위한 Wiener Filter 기반의 디노이징 알고리듬

Wiener Filter Based Denoising Algorithm for Demosaicking

  • 투고 : 2011.02.06
  • 심사 : 2011.05.06
  • 발행 : 2011.05.31

초록

다지털 카메라의 mosaicked image는 Bayer CFA 등의 센서를 통해 획득되며 full resolution의 컬러 영상을 얻기 위해서는 demosaicking이라는 과정이 요구된다. 그러나 시그널이 센서를 통과할 때 noise가 더해지게 되기 때문에 이를 제거하기 위한 denoising process는 demosaicking 과정 전단에 반드시 고려되어야 하는 것이다. 본 논문에서는 demosaicking과 denoising을 분석하고 효율적으로 noise를 제거하는 방식을 제안한다. 제안된 알고리듬은 noiseless CFA에서 얻어지는 필터를 수정함으로서 얻어지며, 낮은 연산량과 함께 만족할만한 성능을 보여준다. CPSNR, SCIELAB, FSIM로 대표되는 화질 측정 방식들은 제안하는 알고리듬이 다양한 레벨의 noise를 효율적으로 제거한다는 것을 보여준다.

In most digital cameras, images are obtained by a sensor overlaid by the color filter array (CFA) such as Bayer, demanding a demosaicking procedure to rebuild the full resolution color images. However, due to the nature of sensor, it is necessary to consider denoising step to remove the noise. In this paper, we analyze demosaicking and denoising jointly and show that the proposed method can solve the denoising issue by simple manner, well suppress different level of noises. The proposed algorithm yields comparable performances measured by several image quality assessment (CPSNR, SCIELAB, and FSIM), while the computational cost is low.

키워드

참고문헌

  1. R. Lukac and K.N. Plataniotis, "Color filter arrays: Design and performance analysis," IEEE Trans. Consum. Electron., Vol.51, No.4, pp. 1260-1267, Apr. 2005. https://doi.org/10.1109/TCE.2005.1561853
  2. B.E. Bayer, "Color Imaging Array," U.S. Patent 3 971 065, 1976.
  3. J.E. Adams, "Interactions between color plane interpolation and other image processing functions in electronic photography," Proc. SPIE, Vol.2416, pp.144-151, 1995.
  4. K. Irie, "Noise-limited scene-change detection in images," Unpublished Doctor of Philosophy dissertation. Lincoln University, 2009.
  5. K. Hirakawa, X.-L. Meng, and P. J. Wolfe, "A framework for wavelet-based analysis and processing of color filter array images with applications to denoising and demosaicking," in Proc. IEEE Int. Conf. Acoustics, Speech and Signal Processing, Vol.I, Apr. 2007, pp.597- 600.
  6. D. L. Donoho, "De-noising by soft-thresholding," IEEE Trans. Inform. Theory, Vol.41, No.3, pp.613-627, May 1995. https://doi.org/10.1109/18.382009
  7. S. G. Chang, B. Yu, and M. Vetterli, "Adaptive wavelet thresholding for image denoising and compression," IEEE Trans. Image Processing, Vol.9, No.9, pp.1532-1546, Sept. 2000. https://doi.org/10.1109/83.862633
  8. J. Portilla, V. Strela, M. J. Wainwright, and E. P. Simoncelli, "Image denoising using scale mixtures of gaussians in the wavelet domain," IEEE Trans. Image Processing, Vol.12, No.11, pp.1338-1351, Nov. 2003. https://doi.org/10.1109/TIP.2003.818640
  9. L. Zhang, X. Wu, and D. Zhang, "Color reproduction from noisy CFA data of single sensor digital cameras," IEEE Trans. Image Processing, Vol.16, No.9, pp.2184-2197, Sept. 2007. https://doi.org/10.1109/TIP.2007.901807
  10. L. Zhang, R. Lukac, X. Wu, and D. Zhang, "PCA-based spatially adaptive denoising of CFA images for single-sensor digital cameras," IEEE Trans. Image Processing, Vol.18, No.4, pp.797-812, Apr. 2009. https://doi.org/10.1109/TIP.2008.2011384
  11. K. Hirakawa and T. W. Parks, "Joint demosaicing and denoising," IEEE Trans. Image Processing, Vol.15, No.8, pp.2146-2157, Aug. 2006. https://doi.org/10.1109/TIP.2006.875241
  12. D. Paliy, V. Katkovnik, R. Bilcu, S. Alenius, and K. Egiazarian, "Spatially adaptive color filter array interpolation for noiseless and noisy data," International Journal of Imaging Systems and Technology, Vol.17, No.3, pp.105-122, Oct. 2007. https://doi.org/10.1002/ima.20109
  13. D. Menon and G. Calvagno, "Joint demosaicking and denoising with space-varying filters," in Proc. IEEE Int. Conf. Image Processing, 2009, pp.477-480.
  14. D. Alleysson, S. Susstrunk, and J. Herault, "Linear demosaicing inspired by the human visual system," IEEE Trans. Image Processing, Vol.14, No.4, pp.439-449, Apr. 2005. https://doi.org/10.1109/TIP.2004.841200
  15. E. Dubois, "Frequency-domain methods for demosaicking of Bayer-sampled color images," IEEE Signal Processing Lett., Vol.12, No.12, pp.847-850, Dec. 2005. https://doi.org/10.1109/LSP.2005.859503
  16. E. Dubois, "Filter design for adaptive frequency-domain Bayer demosaicking," in Proc. of IEEE ICIP, Atlanta, USA, Oct. 2006.
  17. A. Foi, M. Trimeche, V. Katkovnik, and K. Egiazarian, "Practical Poissonian-Gaussian noise modeling and fitting for singleimage raw-data," IEEE Trans. Image Processing, Vol.17, No.10, pp.1737-1754, Oct. 2008. https://doi.org/10.1109/TIP.2008.2001399
  18. G. Jeon, T.-y. Jung, D. Kim, S. Kim, and J. Jeong, "Demosaicing algorithm by gradient edge detection filtering on color component," Journal of Korea Information and Communications Society, Vol.34, No.12, pp.1138-1146, Dec. 2009. (in Korean).
  19. Available: http://white.stanford.edu/-brian/sciel ab/
  20. Available: http://www4.comp.polyu.edu.hk/-cslzhang/IQA/FSIM/FSIM.htm
  21. K, Irie, A. E. McKinnon, K. Unsworth, and I. M. Woodhead, "A technique for evaluation of CCD video-camera noise," IEEE Trans. Circuits and Systems for Video Technology, Vol.18, No.2, pp.280-284, Feb. 2008. https://doi.org/10.1109/TCSVT.2007.913972