Polar-vision1: A Novel Collinearity Equation of Perspective Projection in Polar Coordinate System

Zhengkang Zuo, Bin Zhang
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Abstract

Abstract. Progress has been made in the community of photogrammetry and 3d computer vision in addressing the mathematical challenge posed by the collinearity equation. We introduce a new method for establishing the coordinate reference for 2d pixels and 3d landmarks using 'angular coordinates'. The mathematical relationships required for converting 3d landmarks, expressed in angular coordinates, to the camera framework are presented. The landmarks are then projected using perspective projection to obtain 2d pixels represented in angular coordinates. This framework is formally nominated as the 'Polar-vision1', which has been developed and integrated into the commercial software G3D-Cluster. Its application to pinhole camera image processing has demonstrated superior efficiency and admission rates of tie points, as well as reconstruction detail capabilities, compared to OpenMVG, achieving approximately a 1.4× improvement. The project 'Key Technologies and Tool System for Realistic 3D Modeling through Integration of Multi-Source Information in the Space-Air-Ground Domain' was awarded First Prize at the 2023 Surveying Science and Technology Awards, with Polar-vision1 as one of the innovative points.
Polar-vision1: 极坐标系中透视投影的新型共线性方程
摘要摄影测量学和三维计算机视觉界在解决共线性方程带来的数学挑战方面取得了进展。我们介绍了一种使用 "角度坐标 "建立二维像素和三维地标的坐标参考的新方法。我们介绍了将以角度坐标表示的 3D 地标转换为摄像机框架所需的数学关系。然后使用透视投影法对地标进行投影,从而获得以角度坐标表示的 2d 像素。这一框架被正式命名为 "Polar-vision1",已被开发并集成到商业软件 G3D-Cluster 中。与 OpenMVG 相比,它在针孔摄像机图像处理中的应用显示出了更高的效率和领带点的接纳率,以及重建细节的能力,大约提高了 1.4 倍。天-空-地领域多源信息集成真实三维建模关键技术与工具系统 "项目荣获 2023 年度测绘科学技术奖一等奖,Polar-vision1 是创新点之一。
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