Genetic algorithm using discrete cosine transformation for fractal image encode

Ming-Sheng Wu
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引用次数: 1

Abstract

In this paper, a genetic algorithm using discrete cosine transformation is proposed to speedup the fractal encoder. By using discrete cosine coefficients, the optimal Dihedral transformation between the range block and domain block can be found to save a large number of the redundant MSE computations. Moreover, combining the discrete cosine transformation technique with the genetic algorithm, the length of the chromosome is shortened to smooth the landscape of the search space since the optimal Dihedral index was determined. Hence the encode velocity is accelerated further. Experiments show that the encoding speed of the proposed method is 100 times faster than that of the full search method, while the cost is the 1.1dB loss at the retrieved image quality.
遗传算法利用离散余弦变换对分形图像进行编码
本文提出了一种利用离散余弦变换的遗传算法来提高分形编码器的速度。利用离散余弦系数,找到范围块与域块之间的最优二面体变换,节省了大量冗余的均方差计算。此外,将离散余弦变换技术与遗传算法相结合,缩短了染色体的长度,在确定了最优二面体索引的基础上,使搜索空间更加平滑。从而进一步加快了编码速度。实验表明,该方法的编码速度比全搜索方法快100倍,代价为检索图像质量下1.1dB的损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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