Multi-line laser 3D reconstruction method based on spatial quadric surface and geometric estimation

被引:3
|
作者
Huang, Huiming [1 ]
Liu, Guihua [1 ]
Deng, Lei [1 ]
Song, Tao [1 ]
Qin, FuPing [1 ]
机构
[1] Southwest Univ Sci & Technol, Coll Informat Engn, Mianyang 621000, Peoples R China
来源
SCIENTIFIC REPORTS | 2024年 / 14卷 / 01期
基金
中国国家自然科学基金;
关键词
Quadratic surface equation; Multi line laser calibration; Multi line laser 3D reconstruction;
D O I
10.1038/s41598-024-74331-6
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The traditional multi-line laser 3D reconstruction is based on binocular epipolar constraints and the equation of the laser optical plane. Firstly, matching points are identified based on the epipolar constraints. Then, the correct matching points are selected based on the optical plane equation of the multi-line laser. Finally, 3D reconstruction is performed using the selected matching points. In actual production processes involving multi-line lasers, noticeable distortion occurs due to the projection of Diffractive Optical Elements (DOE) at a large angle. This results in curved laser light planes and curved reflections on the measured objects. Under such circumstances, efficiently screening matching points using the traditional method based on the laser plane equation becomes challenging. Additionally, inherent noise in multi-line laser systems introduces errors in extracted laser center coordinates, making it impossible to directly obtain high-precision 3D data. To address these issues, this paper proposes a method that utilizes spatial quadric surfaces and geometric estimation for completing multi-line laser 3D reconstructions. By analyzing the distortion principle of DOE and the positional relationship after optical diffraction, the multi-line laser manifests as a quadric surface on the optical output plane. Consequently, by calibrating the equations of the quadric surface and applying binocular polar constraints, suitable matching points for the multi-line laser can be chosen. Once an accurate matching point is identified, a minimum geometric distance estimation can be established based on the distance constraint between the point and its corresponding epipolar line. This distance represents the separation between the left and right camera's laser center points and their respective epipolar lines. Utilizing this estimate of the minimum geometric distance, a refined calculation can be performed to better satisfy epipolar constraints and obtain new matching points. Ultimately, utilizing these new matching points enables the completion of 3D reconstruction for multi-line lasers. In comparison with methods relying on spatial plane and epipolar constraints, our algorithm exhibits a superior degree of matchability and accuracy.According to multiple groups of test data, the average error before optimization is 0.3126 mm, and can be increased to 0.0336 mm after optimization.
引用
收藏
页数:23
相关论文
共 50 条
  • [1] Outdoor 3D reconstruction method based on multi-line laser and binocular vision
    Jian, Xu
    Chen, Xin
    He, Wenpeng
    Gong, Xuan
    IFAC PAPERSONLINE, 2020, 53 (02): : 9554 - 9559
  • [2] Spatial quadric calibration method for multi-line laser based on diffractive optical element
    Huang, Huiming
    Liu, Guihua
    Xiao, Canjun
    Deng, Lei
    Gong, Yunxin
    Song, Tao
    Qin, Fuping
    AIP ADVANCES, 2024, 14 (03)
  • [3] Development of a Multi-Line Laser Sensor Based Robotic 3D Measurement System
    Woo, Dong-Gi
    Oh, Jong-Kyu
    Lee, Chan-Ho
    Lee, Sang-Hun
    Jung, Sung-Hyun
    2011 11TH INTERNATIONAL CONFERENCE ON CONTROL, AUTOMATION AND SYSTEMS (ICCAS), 2011, : 1777 - 1782
  • [4] Multi-line laser projection 3D measurement simulation system technology
    Li, Wenguo
    Luo, Zixin
    Hou, Dameng
    Mao, Xueyi
    OPTIK, 2021, 231 (231):
  • [5] Multi-View Images 3D Reconstruction based on Spatial Geometric Constraint
    Liu, Haibo
    PROCEEDINGS OF THE 2016 2ND WORKSHOP ON ADVANCED RESEARCH AND TECHNOLOGY IN INDUSTRY APPLICATIONS, 2016, 81 : 1217 - 1220
  • [6] Efficient 3D scanning measurement system based on asymmetric trinocular vision and a multi-line laser
    Wan, Maosen
    Zheng, Renhao
    Wang, Shuaidong
    Huang, He
    Zhao, Huining
    Yu, Liandong
    APPLIED OPTICS, 2023, 62 (08) : 2145 - 2153
  • [7] An Efficient Geometric Method for 3D Reconstruction Based on Images
    Zhu, Ying
    Jiang, Jingyue
    Tang, Zhiling
    Wang, Fang
    Wang, Rong
    Zhong, Si
    Luo, Xiaonan
    INTERNATIONAL JOURNAL OF GRID AND HIGH PERFORMANCE COMPUTING, 2018, 10 (02) : 34 - 46
  • [8] Surface Reconstruction Based on the 3D Laser Scanner
    Chen, Leyang
    ADVANCES IN DESIGN TECHNOLOGY, VOLS 1 AND 2, 2012, 215-216 : 656 - 659
  • [9] SPATIAL POSITION ESTIMATION METHOD FOR 3D ULTRASOUND RECONSTRUCTION BASED ON HYBRID TRANSFOMERS
    Ning, Guochen
    Liang, Hanying
    Zhou, Lei
    Zhang, Xinran
    Liao, Hongen
    2022 IEEE INTERNATIONAL SYMPOSIUM ON BIOMEDICAL IMAGING (IEEE ISBI 2022), 2022,
  • [10] A NOVEL METHOD OF NORMAL ESTIMATION FOR 3D SURFACE RECONSTRUCTION
    Yuan, Xiaocui
    Peng, Qingjin
    Wu, Lushen
    Chen, Huawei
    INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE, 2015, VOL 4, 2016,