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基于多尺度方向局部极值滤波和ASR的图像融合 被引量:4

Image fusion based on multiscale directional local extrema filter and ASR
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摘要 为了更好地提取源图像的边缘和方向信息,充分利用边缘保持滤波器的保边缘特性和方向滤波器有效提取方向信息的能力,提出一种基于局部极值滤波和非下采样方向滤波器的多尺度方向局部极值滤波图像融合方法。源图像经多尺度方向局部极值滤波,得到低频子带以及一系列的高频方向细节子带,对低频子带系数提出一种基于自适应稀疏表示(ASR)的融合规则,采用空间频率与l1范数相结合的策略得到融合的稀疏表示系数,对高频方向细节子带系数提出一种基于改进拉普拉斯能量和匹配度的选择与加权平均相结合的融合策略。实验结果表明,本方法能够有效提取源图像的边缘等细节信息,融合结果对比度更高,具有更好的主观视觉效果,其客观评价指标也优于传统的图像融合方法。 in order to extrate theedge and diretioal information of the source images effec tively,multiscale direc-tional local extrema filter image fusion algorithm ba sed on local extrema and no nsubsampled direc tproposed. The proposed method takes full use of the feature of edge - preserving filter asampled direc t ion al filter bank,whic h c an preserve the edges and extracts the direction al informationages. The low-frequency sub bands and the high - frequency direct ional detail sub ban ds are obtained by decomposing the source images. The low - frequency ub ban d coefficients are fused by an adaptive sparse repre sentation ( ASR) rule combined spatial frequency and & norm. The high - frequency directional detail subband coefficients are fused byan adap tive select ion and average strategy ba sed on the match degree of the sum of modified Lre sults show that the proposed method could extract the detail information of the source images such asion re sults have h ighe r contrast and better subject ive visual effect. The proposed method also ot ional image fusion methods in terms of the objective evaluation criteria.
作者 刘先红 陈志斌 LIU Xian-hong;CHEN Zhi-bin(Department of Electronic and Optical Engineering,Army Engineering University,Shijiazhuang Campus,Shi jiazhuang 050003,China;32181 Unit of PLA,Shi jiazhuang 050000,China)
出处 《激光与红外》 CAS CSCD 北大核心 2018年第5期644-650,共7页 Laser & Infrared
基金 总装人才战略工程专项基金项目(No.ZZ[2013]714号)资助.
关键词 图像处理 图像融合 局部极值滤波 非下采样方向滤波器组 自适应稀疏表示 拉普拉斯能量和 image processing image fusion local extrema filter nonsubsampled directional filter bank adaptive sparse repre sentation(ASR) of the objcetve creteria.
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