Optical Technique, Volume. 50, Issue 2, 209(2024)
Three-dimensional measurement method of structured light based on defocus unwrapping
[1] [1] Chen F, Brown G M, Song M. Overview of 3-D shape measurement using optical methods[J]. Optical Engineering,2000,39(1):10—22.
[2] [2] Akca M D. 3D modeling of cultural heritage objects with a structured light system[J]. Mediterranean Archaeology & Archaeometry,2012,12(1):139—152.
[3] [3] Niven L, Steele T E, Finke H, et al. Virtual skeletons: using a structured light scanner to create a 3D faunal comparative collection[J]. Journal of Archaeological Science,2009,36(9):2018—2023.
[4] [4] Song L, Li X, Yang Y, et al. Structured-light based 3D reconstruction system for cultural relic packaging[J]. Sensors,2018,18(9):2981.
[5] [5] Counts D B, Averett E W, Garstki K. A fragmented past:(re) constructing antiquity through 3D artefact modelling and customised structured light scanning at Athienou-Malloura, Cyprus[J]. Antiquity,2016,90(349):206—218.
[6] [6] Takeda M, Ina H, Kobayashi S. Fourier-transform method of fringe-pattern analysis for computer-based topography and interferometry[J]. JosA,1982,72(1):156—160.
[7] [7] Su X, Chen W. Fourier transform profilometry: a review[J]. Optics and Lasers in Engineering,2001,35(5):263—284.
[8] [8] Pedraza Ortega J C, Rodriguez Moreno J W, Barriga Rodriguez L, et al. Image processing for 3D reconstruction using a modified fourier transform profilometry method[C]∥Mexican International Conference on Artificial Intelligence. Springer, Berlin, Heidelberg,2007:705—712.
[9] [9] Srinivasan V, Liu H C, Halioua M. Automated phase-measuring profilometry of 3-D diffuse objects[J]. Applied Optics,1984,23(18):3105—3108.
[10] [10] Zhang L, Nayar S. Projection defocus analysis for scene capture and image display[M]. ACM SIGGRAPH 2006 Papers,2006:907—915.
[11] [11] Su X, Su L, Li W, et al. New 3D profilometry based on modulation measurement[C]∥Automated Optical Inspection for Industry: Theory, Technology, and Applications II. SPIE,1998,3558:1—7.
[12] [12] Su X, Su L, Li W. New Fourier transform profilometry based on modulation measurement[C]∥18th Congress of the International Commission for Optics:SPIE1999,3749:438—439.
[13] [13] Su L, Su X, Li W, et al. Application of modulation measurement profilometry to objects with surface holes[J]. Applied Optics,1999,38(7):1153—1158.
[14] [14] Zhong M, Su X, Chen W, et al. Modulation measuring profilometry with auto-synchronous phase shifting and vertical scanning[J]. Optics Express,2014,22(26):31620—31634.
[15] [15] Zuo C, Feng S, Huang L, et al. Phase shifting algorithms for fringe projection profilometry: A review[J]. Optics and Lasers in Engineering,2018,109:23—59.
[16] [16] Feng S, Chen Q, Zuo C, et al. Automatic identification and removal of outliers for high-speed fringe projection profilometry[J]. Optical Engineering,2013,52(1):013605.
[17] [17] Xu Y, Zhao H, Jiang H, et al. High-accuracy 3D shape measurement of translucent objects by fringe projection profilometry[J]. Optics Express,2019,27(13):18421—18434.
[18] [18] Chen B, Zhang S. High-quality 3D shape measurement using saturated fringe patterns[J]. Optics and Lasers in Engineering,2016,87:83—89.
[19] [19] Zhang S. High-speed 3D shape measurement with structured light methods: A review[J]. Optics and Lasers in Engineering,2018,106:119—131.
[20] [20] Xu J, Xi N, Zhang C, et al. Real-time 3D shape inspection system of automotive parts based on structured light pattern[J]. Optics & Laser Technology,2011,43(1):1—8.
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CHEN Hao, LI Hongning, ZHAO Hai, YANG Xin, GAO Yaru. Three-dimensional measurement method of structured light based on defocus unwrapping[J]. Optical Technique, 2024, 50(2): 209