立体对应匹配:平衡多小波与不平衡多小波

P. B. Zadeh, C. Serdean
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引用次数: 2

摘要

研究了不平衡多小波与平衡多小波在立体对应匹配中的效率。首先对一对立体图像进行多小波变换,将其分解为若干子带。不平衡多小波近似子带中的信息携带的输入图像的光谱含量不同,而平衡多小波近似子带中的信息产生的输入图像的光谱含量相似。因此,将非平衡多小波的近似子带应用于视差图生成中,可以获得比平衡多小波更精确的结果。采用全局误差能量最小化技术对每个近似子带生成视差图。然后使用模糊算法将所得视差图中的信息组合以生成密集的视差图。仿真结果表明,与平衡多小波相比,非平衡多小波产生的视差图更平滑,失配误差更小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stereo correspondence matching: Balanced multiwavelets versus unbalanced multiwavelets
This paper investigates the efficiency of unbalanced versus balanced multiwavelets in stereo correspondence matching. A multiwavelet transform is first applied to a pair of stereo images to decorrelate them into a number of subbands. Information in the approximation subbands of an unbalanced multiwavelet carries different spectral content of the input image while the balanced multiwavelet approximation subbands produce similar spectral content of the input image. Hence, the application of the approximation subbands of the unbalanced multiwavelets in disparity map generation could produce more accurate results compared to that of balanced multiwavelets. A global error energy minimization technique is employed to generate a disparity map for each approximation subband. The information in the resulting disparity maps is then combined using a Fuzzy algorithm to generate a dense disparity map. Simulation results show that the unbalanced multiwavelets produce a smoother disparity map with less mismatch errors compared to that of balanced multiwavelets.
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