High-speed three-dimensional shape measurement for isolated objects based on fringe projection

被引:2
|
作者
Li, Yong [1 ]
Zhao, Cuifang [1 ]
Wang, Hui [1 ]
Jin, Hongzhen [1 ]
机构
[1] Zhejiang Normal Univ, Inst Informat Opt, Jinhua 321004, Peoples R China
基金
中国国家自然科学基金;
关键词
three-dimensional imaging; scanners; three-dimensional sensing; surface measurements; fringe analysis; phase measurement; FOURIER-TRANSFORM PROFILOMETRY; AUTOMATIC-MEASUREMENT; 3D SHAPE; PATTERN; ALGORITHM;
D O I
10.1088/2040-8978/13/3/035403
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A method for high-speed measurement of the three-dimensional (3D) shape of spatially isolated objects is proposed. Two sinusoidal fringe patterns with phase difference pi and an encoded pattern are used to measure the 3D shape. A modified Fourier transform profilometry (FTP) method is used for phase retrieval and obtaining high-quality texture. The measurable slope of the height variation is larger than for methods based on traditional FTP and the same as that for methods based on phase measurement profilometry (PMP). The number of patterns is less than for the high-speed methods based on PMP, using which isolated objects can be measured. Consequently, this approach is less sensitive to object motion. In the proposed method, the encoded pattern consists of vertical stripes with width the same as the period of the sinusoidal fringe. Three gray levels are used to form the stripes. Six symbols are encoded with these three gray levels. Then, a pseudorandom sequence is constructed with an alphabet of these six symbols. The stripes are arranged according to the sequence to form the pattern. In the procedure of phase unwrapping, the strings (subsequences) are constructed with symbols corresponding to three neighbor periods of the deformed fringe. The position of the subsequence is worked out by string matching in the pseudorandom sequence. The ranking number of the fringe is identified and then the absolute phase of the deformed fringe is obtained. The 3D shape of the objects is reconstructed with triangulation. A system consisting of a specially designed digital light processing projector and a high-speed camera is presented. The 3D capture speed of 60 frames per second (fps), with a resolution of 640 x 480 points, and that of 120 fps, with a resolution of 320 x 240 points, were achieved. Preliminary experimental results are given. If the control logic of the digital micromirror device was modified and a camera with higher speed was employed, the measurement speed would reach thousands of fps. This makes it possible to analyze dynamic objects.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] Three-Dimensional Shape Measurement of Colored Objects Based on Adaptive Fringe Projection
    Chen Chao
    Gao Nan
    Wang Xiangjun
    Zhang Zonghua
    [J]. ACTA OPTICA SINICA, 2018, 38 (08)
  • [2] High-speed three-dimensional shape measurement with inner shifting-phase fringe projection profilometry
    杨时超
    黄瀚霖
    吴高旭
    吴延雪
    杨恬
    刘飞
    [J]. Chinese Optics Letters, 2022, 20 (11) : 82 - 88
  • [3] High-speed three-dimensional shape measurement with inner shifting-phase fringe projection profilometry
    Yang, Shichao
    Huang, Hanlin
    Wu, Gaoxu
    Wu, Yanxue
    Yang, Tian
    Liu, Fei
    [J]. CHINESE OPTICS LETTERS, 2022, 20 (11)
  • [4] High-speed three-dimensional shape measurement using GOBO projection
    Heist, Stefan
    Lutzke, Peter
    Schmidt, Ingo
    Dietrich, Patrick
    Kuehmstedt, Peter
    Tuennermann, Andreas
    Notni, Gunther
    [J]. OPTICS AND LASERS IN ENGINEERING, 2016, 87 : 90 - 96
  • [5] High-speed scanning stroboscopic fringe-pattern projection technology for three-dimensional shape precision measurement
    Yang, Guowei
    Sun, Changku
    Wang, Peng
    Xu, Yixin
    [J]. APPLIED OPTICS, 2014, 53 (02) : 174 - 183
  • [6] Dynamic Three-dimensional Shape Measurement Based on Fringe Projection
    Su, Xianyu
    Zhang, Qican
    [J]. 2009 LASERS & ELECTRO-OPTICS & THE PACIFIC RIM CONFERENCE ON LASERS AND ELECTRO-OPTICS, VOLS 1 AND 2, 2009, : 203 - 204
  • [7] High-speed three-dimensional measurements with a fringe projection-based optical sensor
    Braeuer-Burchardt, Christian
    Breitbarth, Andreas
    Kuehmstedt, Peter
    Notni, Gunther
    [J]. OPTICAL ENGINEERING, 2014, 53 (11)
  • [8] Three-dimensional shape measurement based on binary fringe conventional projection
    Fu, Guangkai
    Cao, Yiping
    Wang, Yapin
    Wan, Yingying
    Wang, Lu
    Li, Chengmeng
    [J]. TRANSACTIONS OF THE INSTITUTE OF MEASUREMENT AND CONTROL, 2019, 41 (14) : 4073 - 4083
  • [9] High-speed pattern projection for three-dimensional shape measurement using laser speckles
    Schaffer, Martin
    Grosse, Marcus
    Kowarschik, Richard
    [J]. APPLIED OPTICS, 2010, 49 (18) : 3622 - 3629
  • [10] Array projection of aperiodic sinusoidal fringes for high-speed three-dimensional shape measurement
    Heist, Stefan
    Mann, Andreas
    Kuehmstedt, Peter
    Schreiber, Peter
    Notni, Gunther
    [J]. OPTICAL ENGINEERING, 2014, 53 (11)