Chinese Optics, Volume. 17, Issue 1, 1(2024)
On-machine detection technology and application progress of high dynamic range fringe structured light
[4] ZHANG Z H, LIU W, LIU G D, . Overview of the development and application of 3D vision measurement technology[J]. Journal of Image and Graphics, 26, 1483-1502(2021).
[15] CUI H H, LI ZH J, TIAN W, et al. Multiple-exposure adaptive selection algorithm for high dynamic range 3D fringe projection measurement[J]. Proceedings of SPIE, 11053, 110530M(2019).
[19] PING X X, LIU Y, DONG X M, . 3-D reconstruction of textureless and high-reflective target by polarization and binocular stereo vision[J]. Journal of Infrared and Millimeter Waves, 36, 432-438(2017).
[20] HAO J L, ZHAO Y Q, ZHAO H M, . 3D Reconstruction of High-reflective and Textureless Targets Based on Multispectral Polarization and Machine Vision[J]. Acta Geodaetica et Cartographica Sinica, 47, 816-824(2018).
[21] WANG Y H, ZHANG Q, HU Y, et al. Rapid 3D measurement of high dynamic range surface based on multi-polarization fringe projection[J]. Optical Engineering, 60, 084107(2021).
[22] ZHU ZH M, ZHU W T, ZHOU F Q, et al. Three-dimensional measurement of fringe projection based on the camera response function of the polarization system[J]. Optical Engineering, 60, 055105(2021).
[30] SHAO SH CH, TAO X P, WANG X K. On-machine surface shape measurement of reflective mirrors by ultra-precision turning based on fringe reflection[J]. Laser & Optoelectronics Progress, 55, 071203(2018).
[31] [31] YUAN T. Study on fringereflection optical surface shape measurement technology f large aspheric mirr[D]. Changchun: Changchun Institute of Optics, Fine Mechanics Physics, CAS, 2016. (in Chinese)
[32] OH C J, LOWMAN A E, SMITH G A, et al. Fabrication and testing of 4.2m off-axis aspheric primary mirror of Daniel K. Inouye Solar Telescope[J]. Proceedings of SPIE, 9912, 99120O(2016).
[33] WOODHAM R J. Photometric method for determining surface orientation from multiple images[J]. Optical Engineering, 19, 191139(1980).
[36] WANG J H, LI H, WEI L. Study on optical properties of machining surface of optical element based on C-T model[J]. Optical Technique, 47, 172-177(2021).
[38] [38] MENG L F, LU L Y, BEDARD N, et al. Singleshot specular surface reconstruction with gonioplenoptic imaging[C]. IEEE International Conference on Computer Vision, IEEE, 2015: 34333441.
[48] SHAFER S A. Using color to separate reflection components[J]. Color Research & Application, 10, 210-218(1985).
[50] CHUA S Y, LIM C C, ENG S K, et al. Improved high dynamic range for 3D shape measurement based on saturation of the coloured fringe[J]. Pertanika Journal of Science & Technology, 29, 759-770(2021).
[53] LIU Y ZH, FU Y J, ZHUAN Y H, et al. High dynamic range real-time 3D measurement based on Fourier transform profilometry[J]. Optics & Laser Technology, 138, 106833(2021).
[59] HE Z X, LI P L, ZHAO X Y, et al. Chessboard-like high-frequency patterns for 3D measurement of reflective surface[J]. IEEE Transactions on Instrumentation and Measurement, 70, 5009712(2021).
[64] ZUO CH, QIAN J M, FENG SH J, et al. Deep learning in optical metrology: a review[J]. Light:Science & Applications, 11, 39(2022).
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Ze-long LIU, Mao-yue LI, Xin-yuan LU, Ming-lei ZHANG. On-machine detection technology and application progress of high dynamic range fringe structured light[J]. Chinese Optics, 2024, 17(1): 1
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Received: Apr. 16, 2023
Accepted: --
Published Online: Mar. 28, 2024
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