Infrared and Laser Engineering, Volume. 53, Issue 9, 20240332(2024)
Overview of non-intrusive 3D reconstruction methods for transparent objects (invited)
[4] WEI Jiali, QU Huidong, WANG Yongxian. Research review of 3D cameras based on time-of-flight method[J]. Infrared Technology, 43, 60-67(2021).
[10] ZHUANG Sufeng, TU Dawei, ZHANG Xu. Research on corresponding point matching and 3D reconstruction of underwater binocular stereo vision[J]. Chinese Journal of Scientific Instrument, 43, 147-154(2022).
[12] WU Bojian, HUANG Hui. Survey on 3D reconstruction of transparent objects[J]. Journal of Computer-Aided Design & Computer Graphics, 32, 173-180(2020).
[13] PAN Zhihui, CHEN Rui, HU Changping. Research progress in non-intrusive three-dimensional reconstruction of transparent rigid bodies[J]. Laser & Optoelectronics Progress, 60, 0811004-104(2023).
[14] KUTULAKOS N K, STEGER E. A theory of refractive and specular 3D shape by light-path triangulation[J]. International Journal of Computer Vision, 76, 13-29(2008).
[15] TRIVEDI V, JOGLEKAR M, MAHAJAN S et al. Digital holographic imaging of refractive index distributions for defect detection[J]. Optics and Laser Technology, 111, 439-446(2019).
[16] ZHANG B, XU S, JIN X. Research review of coordinate measuring machines[J]. Journal of Scientific Research and Reports, 28, 25-34(2022).
[17] XIE Z X, YU P, GONG H L et al. Flexible scanning method by integrating laser line sensors with articulated arm coordinate measuring machines[J]. Chinese Journal of Mechanical Engineering, 35, 147-156(2022).
[18] PALOUSEK D, OMASTA M, KOUTNY D et al. Effect of matte coating on 3D optical measurement accuracy[J]. Optical Materials, 40, 1-9(2015).
[19] PEREIRA M R J, PENZ S E L D I, SILVA D P F. Effects of different coating materials on three-dimensional optical scanning accuracy[J]. Advances in Mechanical Engineering, 11, 1-6(2019).
[20] [20] TRIFONOV B, BRADLEY D, HEIDRICH W. Tomographic reconstruction of transparent objects [C]17th Eurographics Conference on Rendering Techniques, 2006: 5160.
[22] QIU Baihe, QIAO Yang, XU Xinyang. Surface profile reconstruction of inhomogeneous object based on direct light path method[J]. Journal of Changchun University of Science and Technology, 41, 33-36(2018).
[23] JI Y J, XIA Q, ZHANG Z J. Fusing depth and silhouette for scanning transparent object with RGB-D sensor[J]. International Journal of Optics, 2017, 9796127(2017).
[24] [24] SAJJAN S, MOE M, PAN M K, et al. Clear grasp: 3D shape estimation of transparent objects f manipulation[C]International Conference on Robotics Automation, 2020: 36343642.
[25] [25] XU H P, WANG Y R, EPPEL S, et al. Seeing glass: joint point cloud depth completion f transparent objects [C]5th al at Conference on Robot Learning, 2021: 121.
[26] HE K J, SUI C Y, HUANG T Y et al. 3D Surface reconstruction of transparent objects using laser scanning with LTFtF method[J]. Optics and Lasers in Engineering, 148, 106774(2022).
[28] [28] HERRMANN T, MIGNIOT C, AUBRETON O. Cracks detection on glass object based on active thermography approach [C]14th International Conference on Quality Control by Artificial Vision, 2019: 11172.
[31] [31] BAJARD A, AUBRETON O, TRUCHETET F. 3D shape extraction of internal external surfaces of glass objects [C]SPIE Electronic Imaging, 2013, 8650: 86500X.
[32] [32] BRAHM A, RÖSSLER C, DIETRICH P, et al. Nondestructive 3D shape measurement of transparent black objects with thermal fringes [C]SPIE Commercial Scientific Sensing Imaging, 2016, 9868: 98680C.
[33] [33] BRAHM A, SCHINDWOLF S, LMANN M, et al. 3D shape measurement of glass transparent plastics with a thermal 3D system in the wave infrared [C]SPIE Commercial Scientific Sensing Imaging, 2018, 10667: 106670D.
[34] [34] LMANN M, SPECK H, SCHMIEDER J T, et al. wave infrared 3D sens based on sequential thermal fringe projection f fast accurate shape measurement of transparent objects [C]Dimensional Optical Metrology Inspection f Practical Applications X, 2021: 1173204.
[36] [36] LMANN M, HEIST S, BRAHM A, et al. 3D shape measurement by thermal fringe projection: optimization of infrared (IR) projection parameters [C]SPIE Commercial Scientific Sensing Imaging, 2018, 10667: 1066704.
[37] LANDMANN M, HEIST S, DIETRICH P et al. 3D shape measurement of objects with uncooperative surface by projection of aperiodic thermal patterns in simulation and experiment[J]. Optical Engineering, 59, 094107(2020).
[38] RANTOSON R, STOLZ C, FOFI D et al. Optimization of transparent objects digitization from visible fluorescence ultraviolet induced[J]. Optical Engineering, 51, 033601(2012).
[39] [39] MERIAUDEAU F, RANTOSON R, ADAL K M, et al. Nonconventional imaging systems f 3D digitization of transparent objects: shape from polarization in the IR shape from visible fluescence induced UV [C]3rd International Topical Meeting on Optical Sensing Artificial Vision, 2013: 3440.
[40] [40] RANTOSON R, STOLZ C, FOFI D, et al. Non contact 3D measurement scheme f transparent objects using UV structured light [C]20th International Conference on Pattern Recognition, 2010: 16461649.
[41] [41] RANTOSON R, STOLZ C, FOFI D, et al. 3D reconstruction of transparent objects exploiting surface fluescence caused by UV irradiation [C]17th International Conference on Image Processing, 2010: 29652968.
[43] LI X, LIU Z Q, CAI Y D et al. Polarization 3D imaging technology: a review[J]. Frontiers in Physics, 11, 1198457(2023).
[44] LIU Jing, JIN Weiqi, WANG Xia. Review of shape from polarization for transparent object[J]. Infrared Technology, 36, 681-687(2014).
[45] [45] STOLZ C, KECHICHE Z A, AUBRETON O, et al. Sht review of polarimetric imaging based method f 3D measurements [C]SPIE Photonics Europe, 2016, 9896: 98960P.
[51] WU Yinfeng, YANG Jinhua, YU Xinping. The incident angle determination based on infrared polarization[J]. Journal of Changchun University of Science and Technology, 33, 4-7(2010).
[52] [52] KECHICHE Z A, RANTOSON R, AUBRETON O, et al. Shape from polarization in the far IR applied to 3D digitization of transparent objects [C]Quantitative Infrared Thermography, 2016: 944950.
[53] [53] MIYAZAKI D, KAGESAWA M, IKEUCHI K. Polarizationbased transparent surface modeling from two views [C]Proceedings Ninth IEEE International Conference on Computer Vision, 2003: 13811386.
[56] HAN P L, CAI Y D, LIU F et al. Computational polarization 3D: new solution for monocular shape recovery in natural conditions[J]. Optics and Lasers in Engineering, 151, 106925(2022).
[59] ZOU R, ZHANG Y, GU J L et al. Simultaneous measurement of 3D surface and thickness of large area and thickness transparent materials based on polarization model and TOF correction[J]. Optik-International Journal for Light and Electron Optics, 254, 168560(2022).
[60] [60] ZHU D Z, SMITH P A W. Depth from a polarisation + RGB stereo pair [C]Conference on Computer Vision Pattern Recognition, 2019: 75787587.
[61] TIAN X, LIU R, WANG Z Y et al. High quality 3D reconstruction based on fusion of polarization imaging and binocular stereo vision[J]. Information Fusion, 77, 19-28(2022).
[63] ZHANG Z H, CHANG C X, LIU X H et al. Phase measuring deflectometry for obtaining 3D shape of specular surface: a review of the state-of-the-art[J]. Optical Engineering, 60, 020903(2021).
[64] WU Zhendong, WANG Daodang, RUAN Yang. Review of research on computer-aided deflectometric measurement technology[J]. Acta Optica Sinica, 42, 1712001(2022).
[65] [65] FABER C, KNAUER M C, HÄUSLER G. Can deflectometry wk in presence of parasitic reflections [C]DGaO Proceedings, 2009: A10.
[67] [67] SPRENGER D, FABER C, SERAPHIM M C, et al. UVdeflectometry: no parasitic reflections [C]DGaO Proceedings, 2010: A19.
[68] [68] SU P, KHREISHI M, HUANG R, et al. Precision aspheric optics testing with SCOTS: a deflectometry approach [C]Optical Measurement Systems f Industrial Inspection VIII, 2013, 8788: 87881E.
[69] YANG S C, YANG T, WU Y X et al. Line-encoded structured light measurement method in measuring shiny and transparent objects[J]. Journal of Optics, 25, 5701(2023).
[70] WANG R Y, LI D H, XU K Y et al. Parasitic reflection elimination using binary pattern in phase measuring deflectometry[J]. Optics Communications, 451, 67-73(2019).
[73] [73] WANG R Y, LI D H, XU K Y, et al. Study on eliminating the effect of parasitic reflection on deflectometry measurement of planar optical element surface figure [C]International Symposium on Advanced Optical Manufacturing Testing Technologies, 2019: 1084119.
[74] TAO S W, YUE H M, CHEN H L et al. Elimination of parasitic reflections for objects with high transparency in phase measuring deflectometry[J]. Results in Physics, 15, 102734(2019).
[75] YE J Q, NIU Z Q, ZHANG X C et al. Simultaneous measurement of double surfaces of transparent lenses with phase measuring deflectometry[J]. Optics and Lasers in Engineering, 137, 106356(2021).
[78] WANG R Y, LI D H, LI L et al. Surface shape measurement of transparent planar elements with phase measuring deflectometry[J]. Optical Engineering, 57, 104104(2018).
[79] ZHENG W X, LI D H, WANG R Y et al. Parasitic reflection separation deflectometry based on harmonic analysis[J]. Measurement, 203, 111864(2022).
[80] HUANG W, JIAO S M, MIAO H S et al. A single-pixel imaging based stereo deflectometry for 3D reconstruction of free-form transparent objects with parasitic reflections[J]. IEEE Transactions on Computational Imaging, 9, 1201-1212(2023).
[81] [81] KARAMI A, BATTISTI R, MENNA F, et al. 3D digitization of transparent glass surfaces: state of the art analysis of some methods [C]24th International Society f Photogrammetry Remote Sensing Congress, 2022: 695702.
[84] BURKE J, PAK A, HöFER S et al. Deflectometry for specular surfaces: an overview[J]. Advanced Optical Technologies, 12, 1237687(2023).
[86] LIU Z W, GUO J, SHI W X et al. Transmission-speckle correlation for measuring dynamic deformation of liquid surface[J]. Optics and Lasers in Engineering, 65, 110-116(2015).
[88] LIU S L, LIU Z W. Double transmission-mediums based geometric phase analysis for determining the two surface profiles of transparent object[J]. Optics and Lasers in Engineering, 80, 17-23(2016).
[92] XIAO Xiangtian, LI Dahai, YU Linzhi. Measuring structural parameters of single lens using transmission deflectometry[J]. Chinese Journal of Lasers, 49, 2304001-77(2022).
[93] XU Ping, WANG Daodang, XIE Zhongmin. Large-aberrated transmitted wavefront test based on phase measuring deflectometry[J]. Chinese Journal of Scientific Instrument, 39, 99-105(2018).
[96] XU Xiaobo, DUAN Minghui, FAN Xin. Surface defect detection of transparent objects based on fringe modulation[J]. Acta Optica Sinica, 43, 0512003-155(2023).
[97] DING Yujie, ZHOU Zhifeng, WANG Yong. Surface defect detection of transparent objects based on phase measuring deflectometry[J]. Electronic Science and Technology, 37, 1-10(2024).
[98] [98] TSAI C Y, VEERARAGHAVAN A, SANKARANARAYANAN A C. What does a single lightray reveal about a transparent object [C]IEEE International Conference on Image Processing, 2015: 606610.
[99] LIU Fangming, LIN Jiarui, SUN Yanbiao. Calibration method for stereo phase measuring deflectometry system[J]. Laser & Optoelectronics Progress, 57, 051202-143(2020).
[100] HAO Zhichao, LIU Yuankun. Transparent object shape measurement based on deflectometry[J]. Optics & Optoelectronic Technology, 17, 63-69(2019).
[101] [101] YAMAZAKI M, IWATA S, XU G. Dense 3D reconstruction of specular transparent objects using stereo cameras phaseshift method [C]8th Asian Conference on Computer Vision, 2007: 570579.
[102] [102] QIAN Y M, GONG M L, YANG Y H. 3D reconstruction of transparent objects with positionnmal consistency [C]Conference on Computer Vision Pattern Recognition, 2016: 43694377.
[103] WU B J, ZHOU Y, QIAN Y M et al. Full 3D reconstruction of transparent objects[J]. ACM Transactions on Graphics, 37, 1-11(2018).
Get Citation
Copy Citation Text
Nan GAO, Pengcheng WANG, Zezhen LIU, Yubo NI, Zhaozong MENG, Zonghua ZHANG. Overview of non-intrusive 3D reconstruction methods for transparent objects (invited)[J]. Infrared and Laser Engineering, 2024, 53(9): 20240332
Category: Special issue—Computational optical imaging and application Ⅱ
Received: Jul. 22, 2024
Accepted: --
Published Online: Oct. 22, 2024
The Author Email: