OPTICS & OPTOELECTRONIC TECHNOLOGY, Volume. 21, Issue 2, 11(2023)
Three-Dimensional Measurement for Highly Reflective Object
[1] [1] Liu X, Kofman J. Real-time 3D surface-shape measurement using background-modulated modified Fourier transform profilometry with geometry-constraint[J]. Optics and Lasers in Engineering, 2019, 115: 217-224.
[4] [4] MA Qiuna, CAO Yiping, CHEN Cheng, et al. Intrinsic feature revelation of phase-to-height mapping in phase measuring profilometry[J]. Optics & Laser Technology, 2018, 108: 46-52.
[5] [5] Z Zhang. A flexible new technique for camera calibration[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 2000, 22(11): 1330-1334.
[6] [6] Palousek D, Omasta M, Koutny D, et al. Effect of matte coating on 3D optical measurement accuracy[J]. Optical Materials, 2015, 40: 1-9.
[8] [8] Shenhua Zhang, Yanxi Yang, Wenwen Shi, et al. 3D shape measurement method for high-reflection surface based on fringe projection[J]. Appl. Opt., 2021, 60: 10555-10563.
[9] [9] Sun J, Zhang Q. A 3D shape measurement method for high-reflective surface based on accurate adaptive fringe projection[J]. Optics and Lasers in Engineering, 2022, 153: 106994.
[10] [10] Song L, Ru Y, Yang Y, et al. Three-dimensional measurement with reflection suppression based on high-dynamic range images[J]. Journal of Electronic Imaging, 2019, 28(1): 013010.
[11] [11] Wu K, Tan J, Xia H L, et al. An exposure fusion-based structured light approach for the 3D measurement of a specular surface[J]. IEEE Sensors Journal, 2021, 21: 6314-6324.
[13] [13] Riviere J, Reshetouski I, Filipi L, et al. Polarization imaging reflectometry in the wild[J]. ACM Transactions on Graphics (TOG), 2017, 36(6): 1-14.
[14] [14] Feng S, Zhang Y, Chen Q, et al. General solution for high dynamic range three-dimensional shape measurement using the fringe projection technique[J]. Optics and Lasers in Engineering, 2014, 59: 56-71.
[17] [17] Wu H, Cao Y, An H, et al. Fast and robust online three-dimensional measurement based on feature correspondence[J]. Optical Engineering, 2021, 60(7): 074101.
[18] [18] Chen Y, Cao Y, Yuan H, et al. A stroboscopic online three-dimensional measurement for fast rotating object with binary dithered patterns[J]. Transactions of the Institute of Measurement and Control, 2018, 40(8): 2660-2668.
[19] [19] Li C, Cao Y, Chen C, et al. Computer-generated Moiré profilometry[J]. Optics Express, 2017, 25(22): 26815-26824.
[20] [20] S K Nayar, K Ikeuchi, T Kanade. Surface reflection: Physical and geometrical perspectives[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 1991, 13(7): 611-634.
[21] [21] S Feng, Q Chen, C Zuo, et al. Fast three-dimensional measurements for dynamic scenes with shiny surfaces[J]. Opt. Commun., 2017, 382: 18-27.
[23] [23] Haitao Wu, Yiping Cao, Haihua An, et al. High-precision 3D shape measurement of rigid moving objects based on the Hilbert transform[J]. Appl. Opt., 2021, 60: 8390-8399.
[24] [24] Su X, Chen W, Zhang Q, et al. Dynamic 3-D shape measurement method based on FTP[J]. Optics and Lasers in Engineering, 2021, 36(1): 49-64.
[25] [25] Bay H, Ess A, Tuytelaars T, et al. Speeded-up robust features (SURF)[J]. Computer vision and image understanding, 2008, 110(3): 346-359.
[26] [26] Myronenko A, Song X. Point set registration: Coherent point drift[J]. IEEE transactions on pattern analysis and machine intelligence, 2010, 32(12): 2262-2275.
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LI Ming-hang, CAO Yi-ping, WU Hai-tao, LI Zhi-chao, WANG Lin-xi, LI Hong-mei. Three-Dimensional Measurement for Highly Reflective Object[J]. OPTICS & OPTOELECTRONIC TECHNOLOGY, 2023, 21(2): 11
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Received: Aug. 10, 2022
Accepted: --
Published Online: Apr. 15, 2023
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