參考文獻 |
[1] I. Ashdown,”Octree color quantization,”in Radiosity-Aprogrammer’s Perspective. New York: Wiley, 1994.
[2] I. Ashdown, “Octree color quantization,” in Radiosity-A Programmer’s Perspective. New York: Wiley, 1994.
[3] J. C. Bezdek, Fuzzy mathematics in pattern classification, Ph.D Thesis, Cornell University, 1973.
[4] G. Boccignone, “A multiscale contrast enhancement method,” in Proc. Int. Conf. Image Processing, pp. 306-309, 1997.
[5] J. M. Buhmann et al., “Dithered color quantization,” in Proc. EUROGRAPHICS, vol. 17, no. 3, Lisboa, Portugal, Computer Graphics Forum, 1998, pp. 219-231
[6] V. Caselles, J. L. Lisani, J. M. Morel, and G. Sapiro, “ Shape preserving local contrast enhancement,” in Proc. Int. Conf. Image Processing, pp. 314-317, 1997.
[7] A. J. Dekker, “Kohonen neural networks for optimal color quantization, ” Network: Computat. Neural Syst., vol. 5, pp. 351-367, 1994.
[8] A. H. Dekker, “Kohonen neural networks for optimal color quantization,” Network: Computat. Neural Syst., vol. 5, pp. 351-367, 1994.
[9] J. C. Dunn, “A fuzzy relative of the ISODATA process and its use in detecting compact, well separated clusters,“ Journal Cybern., vol. 3, no. 3, pp. 35-57, 1973.
[10] Y. Deng, B. S. Manjunath and Hyundoo Shin. Color image segmentation. IEEE Computer Society Conference on Computer Vision and Pattern, 2:446-451,1999
[11] B. Fritzke, “Growing cell structures-a self-organizing network for unsupervised and supervised learning,”Neural Networks, vol. 7, no. 9, pp. 1441-1460, 1994.
[12] M. Gervautz and W. Purgathofer, :A simple method for color quantization: Octree quantization, in Graphics Gems, A. S. Glassner, Ed. New York Academic, 1990, pp. 287-293.
[13] M. Gervautz and W. Purgathofer, “A simple method for color quantization: Octree quantization.” In Graphics Gems, A. S. Glassner, Ed. New York: Academic, 1990, pp. 287-293.
[14] R. C. Gonazlez and R. E. woods, Digital image processing, 2nd. Addison-wesley, 1992.
[15] T. Haruki and K. Kikuchi, “Video camera system using fuzzy logic,” IEEE Transactions on Consumer Electronics,Vol.38, No.3 , pp.624-634, Aug. 1992.
[16] P. Heckbert , “Color image quantization for frame buffer display,” Comput. Graph,. Vol. 16, pp. 297-307, 1982.
[17] P Heckbert, “Color image quantization for frame buffer display,” Comput. & Graph., vol. 16, pp. 297-307,1982.
[18] I. S. Hsieh and K. C. Fan, “An adative clustering algorithm for color quantization,” Pattern Recognit. Lett., vol. 21, pp. 337-346, 2000.
[19] J. Q. Huang, New Technique for Digital Backlight Image Compensation, MS Thesis, Department of Computer Science and Information Engineering, Chung Hua University, ROC , Jun 2001.
[20] R. Hummel, “Image enhancement by histogram transformation,” Comp. Graph. Image Process., vol. 6, pp. 184-195, 1977.
[21] A. K. Jain, “Fundamentals of digital image processing,” Englewood Cliffs, NJ: Prentice-Hall, 1989.
[22] G. Joy and Z. Xiang, “Center-cut for color image quantization,” The Visual Computer vol. 10, pp. 62-66,1993.
[23] Y. P. Jun, H. Yoon, J. W. Cho, “L*learning: a fast self-organizing feature map learning algorithm based on incremental ordering,” IEICE Transactions on Information & Systems, vol. E76, no. 6, pp.698-706, 1993.
[24] D. J. Ketcham., R. Lowe, and W. Weber, “Seminar on image processing,” in Real-Time Enhancement Techniques, 1976, pp. 1-6. Hughes Aircraft.
[25] Y. T. Kim, “Contrast enhancement using brightness preserving bi-his togram equalization,” IEEE Trans. Consumer Electron., vol. 43 , no. 1, pp. 1-8, Feb. 1997.
[26] T. K. Kim, J. K. Paik, and B. S. Kang, “ Contrast enhancement system using spatially adaptive histogram equalization with temporal filtering,” IEEE Trans. on Consumer Electronics, vol. 44, no. 1, pp. 82-86, Feb. 1998.
[27] J. Y. Kim, L. S. Kim, and S. H. Hwang: “An advance contrast enhancement using partially overlapped sub-block histogram Equalization,” IEEE Tran. on Circuits and Systems for Video Technology, vol. 11, no. 4, pp. 475-484, April 2001.
[28] Y. Linde, A. Buzo and R. Gray, “An algorithm for vector quantizer design,” IEEE Tran. on Commun. COM vol. 28, NO 1, pp. 84-95,1980.
[29] Y. W. Lin and S. U. Lee, “On the color image segmentation algorithm based on the thresholding and the fuzzy C-means techniques,” Pattern Recognit., vol. 23, no. 9, pp. 935-952, 1990.
[30] Z. P. Lo and B. Bavarian, “On the rate of convergence in topology preserving neural networks,” Biological Cybernetics, vol. 65, pp.55-63, 1991
[31] A. Morimura, K. Uomori, Y. Kitamura, A. Fujioka, J.Harada, S. Iwamura and M.Hirota, “A digital video camera system,” IEEE Transactions on Consumer Electronics, Vol. 36, No.4, pp.866-875, Nov. 1990
[32] M. Murakami and N. Honda, “An exposure control system of video cameras based on fuzzy logic using color information,” Proceedings of the Fifth IEEE International Conference on Fuzzy Systems, Vol. 3, 1996
[33] M. T. Orchard and C. A. Bouman, “Color quantization of images,” IEEE Tran. on Signal Processing vol. 39, NO 12, PP. 2677-2690, 1991.
[34] N. Papamarkos, “Color reduction using local features and a SOFM neural network,” Int. J. Imag. Syst. Technol., vol. 10, no. 5, pp. 404-409.
[35] N. Papamarkos, Antonis E. Atsalakis, and Charalampos P. Strouthopoulos, “Adaptive Color Reduction,” IEEE Tran. on Systems, Man and Cybernetics-Part B:Cybernetics, Vol. 32, Feb 2002.
[36] S. M. Pizer, E. P. Amburn, J. D. Austin, R. Cromartie, A. Geselowitz, T.Greer, B. H. Romeny, J. B. Zimmerman, and K. Zuiderveld, “Adaptive histogram equalization and its variations,” Comp. Vis. Graph. Image Process, Vol. 39, no. 3, pp. 355-368, 1987.
[37] Jan Puzicha and Joachim M.Buhmann. Histogram clustering for unsupervised image segmentation. Proceedings o f the Computer Vision and Pattern Recognition, 2, Jun 1999.
[38] S. Sakaue, A. Tamura, M. Nakayama, and S. Maruno, “ Adaptive garmma processing of the video cameras for the expansion of the dynamic range,” IEEE Trans. Consumer Electron., vol. 41, pp. 555-562, Aug. 1995.
[39] P. Scheunders, “A comparison of clustering algorithms applied to color image quantization,” Pattern Recognit. Lett., vol. 18, pp. 1379-1384, 1997.
[40] P. Scheunders, “A genetic C-means clustering algorithm applied to color image quantization.” Pattern Recognit.,vol.30, no 6, pp. 859-886,1997.
[41] S. Shimizu, T. Kondo, T. Kohashi, M. Tsurata, T. Komuro, “A new algorithm for exposure control based on fuzzy logic for video cameras,” IEEE Transactions on Consumer Electronics, Vol.38, No.3, pp.617-623, Aug. 1992.
[42] M. Stricker and M. Orengo, “Similarity of color images,” in Proc. SPIE Conf. Storage Retrieval for Still Images Video Databases, vol. 2420. SanJose, CA, 1995, pp. 381-392.
[43] J. A. Stark, “Adaptive image contrast enhancement using generalizations of histogram equalization,” IEEE Tran. on Image Processing, vol. 9, no. 5, pp. 889-896, May 2000.
[44] M. C. Su., T. K. Liu, and H. T. Chang, “An efficient initialization scheme for the self-organizing feature map algorithm,” IEEE International Joint Conference on Neural Networks, Washington D.C., 1999.
[45] M. C. Su, Eugene Lai, C. Y. Tew, C. W. Liu, and C. S. Chang, 2001, “Application of SOM-Based Fuzzy Systems in Voltage Security Margin Estimation,” in Journal of Advanced Computational Intelligence, vol. 5, no. 3, pp. 157-162
[46] V. T. Tom and G. J. Wolfe, “ Adaptive histogram equalization and its applications,” SPIE Applicat. Dig. Image Process., vol. 359, pp. 204-209, 1982.
[47] J. T. Tou and R. C. Gonazlez, “Pattern Recognition Principles,” reading MA:Addison-Wesley 1974.
[48] L. Velho, J. Gomes, and M. V. R. Sobreiro, “Color image quantization by pairwise clustering,” in Proc. Tenth Brazilian Symp Comput. Graph. Image Process., L. H. de Figueiredo and M. L. Netto, Eds. Campos do Jordao, Spain, 1997, pp. 203-210.
[49] O. Verevka, “The local K-means algorithm for color image quantization,” M.Sc. dissertation, Univ. Alberta, Edmonton, AB,Canada, 1995.
[50] S. J. Wan, P. Prusinkiewicz, and S. K. M. Wong, “Variance based color image quantization for frame buffer display,” Color Res. Applicat., vol. 15, no. 1, pp. 52-58, 1990.
[51] C. Y. Yang and J. C. Lin, “RWM-cut for color image quantization,” Comput. & Graph., vol. 20 pp. 577-588,1996.
[52] D. X. Zhong and H. Yan. “Color image segmentation using color space analysis and fuzzy clustering,” IEEE Signal Processing Society Workshop, 2:624-633.
[53] J. Zimmerman, S. Pizer, E. Staab, E. Perry, W. McCartney, and B. Brenton, “Evaluation of the effectiveness of adaptive histogram equalization for contrast enhancement,” IEEE Trans. Medical Imaging, pp. 304-312, Dec. 1988. |