Flexible Camera Calibration using a Collimator System

Fuente: arXiv
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Main Authors: Liang, Shunkun, Guan, Banglei, Yu, Zhenbao, Tan, Dongcai, Sun, Pengju, Liu, Zibin, Yu, Qifeng, Shang, Yang
Format: Preprint
Published: 2025
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author Liang, Shunkun
Guan, Banglei
Yu, Zhenbao
Tan, Dongcai
Sun, Pengju
Liu, Zibin
Yu, Qifeng
Shang, Yang
author_facet Liang, Shunkun
Guan, Banglei
Yu, Zhenbao
Tan, Dongcai
Sun, Pengju
Liu, Zibin
Yu, Qifeng
Shang, Yang
contents Camera calibration is a crucial step in photogrammetry and 3D vision applications. This paper introduces a novel camera calibration method using a designed collimator system. Our collimator system provides a reliable and controllable calibration environment for the camera. Exploiting the unique optical geometry property of our collimator system, we introduce an angle invariance constraint and further prove that the relative motion between the calibration target and camera conforms to a spherical motion model. This constraint reduces the original 6DOF relative motion between target and camera to a 3DOF pure rotation motion. Using spherical motion constraint, a closed-form linear solver for multiple images and a minimal solver for two images are proposed for camera calibration. Furthermore, we propose a single collimator image calibration algorithm based on the angle invariance constraint. This algorithm eliminates the requirement for camera motion, providing a novel solution for flexible and fast calibration. The performance of our method is evaluated in both synthetic and real-world experiments, which verify the feasibility of calibration using the collimator system and demonstrate that our method is superior to existing baseline methods. Demo code is available at https://github.com/LiangSK98/CollimatorCalibration
format Preprint
id arxiv_https___arxiv_org_abs_2512_16113
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Flexible Camera Calibration using a Collimator System
Liang, Shunkun
Guan, Banglei
Yu, Zhenbao
Tan, Dongcai
Sun, Pengju
Liu, Zibin
Yu, Qifeng
Shang, Yang
Computer Vision and Pattern Recognition
Camera calibration is a crucial step in photogrammetry and 3D vision applications. This paper introduces a novel camera calibration method using a designed collimator system. Our collimator system provides a reliable and controllable calibration environment for the camera. Exploiting the unique optical geometry property of our collimator system, we introduce an angle invariance constraint and further prove that the relative motion between the calibration target and camera conforms to a spherical motion model. This constraint reduces the original 6DOF relative motion between target and camera to a 3DOF pure rotation motion. Using spherical motion constraint, a closed-form linear solver for multiple images and a minimal solver for two images are proposed for camera calibration. Furthermore, we propose a single collimator image calibration algorithm based on the angle invariance constraint. This algorithm eliminates the requirement for camera motion, providing a novel solution for flexible and fast calibration. The performance of our method is evaluated in both synthetic and real-world experiments, which verify the feasibility of calibration using the collimator system and demonstrate that our method is superior to existing baseline methods. Demo code is available at https://github.com/LiangSK98/CollimatorCalibration
title Flexible Camera Calibration using a Collimator System
topic Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2512.16113