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直线约束和不同相机间距的立体图像克隆算法

本站小编 Free考研考试/2022-01-16

侯春萍1, 刘琦1, 阎维青2, 王致芃1, 陈天宇3
AuthorsHTML:侯春萍1, 刘琦1, 阎维青2, 王致芃1, 陈天宇3
AuthorsListE:Hou Chunping1, Liu Qi1, Yan Weiqing2, Wang Zhipeng1, Chen Tianyu3
AuthorsHTMLE:Hou Chunping1, Liu Qi1, Yan Weiqing2, Wang Zhipeng1, Chen Tianyu3
Unit:1. 天津大学电气自动化与信息工程学院,天津 300072;2. 烟台大学计算机与控制工程学院,烟台 264005;3. 天津大学国际工程师学院,天津 300072
Unit_EngLish:1. School of Electrical and Information Engineering, Tianjin University, Tianjin 300072, China
2.School of Computer and Control Engineering, Yantai University, Yantai 264005, China
3.International Engineering Institute, Tianjin University, Tianjin 3
Abstract_Chinese:为了满足用户处理3D图像的需求, 本文提出一种基于直线约束和不同相机间距的立体图像克隆算法, 将源立体图像的指定区域通过迭代调整的方式精确克隆到目标立体图像中.首先采用一种轮廓线确定的方法来调整用户绘制的轮廓, 然后提出一种基于相机间距和视差的缩放因子, 并利用透视缩放函数、直线约束函数、视差约束函数和位置固定函数来调整源立体图像指定区域的大小, 以保证精确克隆后立体图像视差的一致, 且不发生结构失真.实验结果表明, 所提算法能够对不同相机拍摄的立体图像进行精确克隆, 显示效果更佳.
Abstract_English:To meet the requirement of manipulating stereoscopic images for users,a stereoscopic image cloning algorithm based on linear constraint and different camera spacings was presented in this paper,which precisely clones the specified region of the source stereoscopic image into the target stereoscopic image by iterative adjustment. In order to better guide the image warping,a contour line determination method was adopted to adjust the contour drawn by the user. Then,a scale factor based on camera spacing and disparity was also proposed,and the perspective scaling function,linear constraint function,disparity constraint function and position fixing function were used to adjust the size of the specified region of the source stereoscopic image,ensuring that the precisely cloned stereoscopic images are disparity-matched,and protect the structure. Experimental results indicate that the proposed algorithm can better clone the stereoscopic images shot by different stereo cameras seamlessly.
Keyword_Chinese:立体图像克隆; 迭代优化变形; 相机间距; 直线约束; 视差调整
Keywords_English:stereoscopic image cloning; iterative optimization of warping; camera spacing; linear constraint; disparity adjustment

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