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一种基于抛物面模型的参数修正的鱼眼图像校正算法

王翊 李志辉 许耀华

现代电子技术2026,Vol.49Issue(3):13-18,6.
现代电子技术2026,Vol.49Issue(3):13-18,6.DOI:10.16652/j.issn.1004-373x.2026.03.003

一种基于抛物面模型的参数修正的鱼眼图像校正算法

Fisheye image correction algorithm based on parameter adjustment using paraboloid model

王翊 1李志辉 1许耀华1

作者信息

  • 1. 安徽大学 电子信息工程学院,安徽 合肥 230601
  • 折叠

摘要

Abstract

Fisheye lenses,renowned for their ultra-wide field of view,find extensive applications in security surveillance and exploration fields.However,radial distortion caused by the short focal length design impairs the practical utility of fisheye lenses seriously.In view of the above,this paper introduces a parameter-adjustable fisheye image correction algorithm based on a paraboloid model,which enhances the correction quality of fisheye image effectively.Initially,an improved row-by-row and column-by-column scanning method is employed for effective region extraction,which reduces scanning time substantially.Subsequently,a preliminary correction is performed on the fisheye images by a parameter-adjustable paraboloid model,and then the model parameters are adjusted according to the correction effects for a subsequent refinement.Finally,a bilinear interpolation algorithm is applied to the corrected images for interpolation.Simulation results demonstrate that,when compared with perspective projection algorithm featuring optical center shift and longitude correction algorithm involving repositioning,the proposed algorithm yields superior correction effects in outdoor architecture,indoor structures,and landscapes,preserving more valid information in the corrected images.This makes it particularly valuable for practical applications in the fields of security surveillance and exploration.

关键词

鱼眼镜头/抛物面模型/提取算法/插值算法/畸变校正/鱼眼图像/校正算法/参数修正

Key words

fisheye lens/paraboloid model/extraction algorithm/interpolation algorithm/distortion correction/fisheye image/correction algorithm/parameter correction

分类

信息技术与安全科学

引用本文复制引用

王翊,李志辉,许耀华..一种基于抛物面模型的参数修正的鱼眼图像校正算法[J].现代电子技术,2026,49(3):13-18,6.

基金项目

安徽高校协同创新项目(GXXT-2023-015) (GXXT-2023-015)

现代电子技术

1004-373X

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