Stereoscopic zoom for visual optimization based on grid deformation

Q3 Engineering
Zhou Shen, Chai Xiongli, Shao Feng
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引用次数: 1

Abstract

Stereoscopic image zoom optimization is a popular basic research problem in the field of image processing and computer vision in recent years. The zoom visual enhancement technology of 3D images has attracted more and more attention. To this end, this paper proposes a method of stereoscopic zoom vision optimization based on grid deformation from the model of camera zoom shooting, and strives to improve the experience of 3D stereo-scopic vision. Firstly, use the digital zoom method to simulate the camera model to properly zoom in on the target area, and then establish the mapping relationship between the reference image and the target image according to the camera zoom distance. Secondly, extract the foreground target object and use the modified just noticeable depth difference (JNDiD) model to guide the adaptive depth adjustment of the target object. Finally, combined with the seven grid-optimized energy terms designed in this paper, the image grid is optimized to improve the visual perception of the target object and ensure a good visual experience for the entire stereoscopic image. Compared with the existing digital zoom method, the proposed method has better effects on the size control of the image target object and the depth adjustment of the target object.
基于网格变形的立体变焦视觉优化
立体图像变焦优化是近年来图像处理和计算机视觉领域的一个热门基础研究问题。三维图像的变焦视觉增强技术越来越受到人们的关注。为此,本文从摄像机变焦拍摄模型出发,提出了一种基于网格变形的立体变焦视觉优化方法,力求提高三维立体视觉的体验。首先利用数字变焦方法模拟摄像机模型,对目标区域进行适当的放大,然后根据摄像机的变焦距离建立参考图像与目标图像之间的映射关系。其次,提取前景目标物体,利用改进的刚可察觉深度差(JNDiD)模型指导目标物体的自适应深度调整;最后,结合本文设计的七个网格优化能量项,对图像网格进行优化,以提高目标物体的视觉感受,保证整个立体图像具有良好的视觉体验。与现有的数字变焦方法相比,所提出的方法在图像目标物体的尺寸控制和目标物体的深度调整方面具有更好的效果。
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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来源期刊
光电工程
光电工程 Engineering-Electrical and Electronic Engineering
CiteScore
2.00
自引率
0.00%
发文量
6622
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