Infrared and Laser Engineering, Volume. 51, Issue 8, 20210625(2022)
High speed reconstruction system for indoor environments based on an adaptive interpolation filter
[1] [1] Thomas D, Sugimoto A. A flexible scene representation f 3D reconstruction using an RGBD camera[C]2013 IEEE International Conference on Computer Vision, 2013: 28002807.
[2] G Q Ma, L Liu, Z L Yu, et al. Application and development of three-dimensional profile measurement for large and complex surface. Chinese Optics, 12, 214-228(2019).
[3] R J Du, B Z Ge, L Ch. Texture mapping of multi-view high-resolution images and binocular 3D point clouds. Chinese Optics, 13, 1055-1064(2020).
[4] Xiaojuan Ning, Zhiwei Lu, Jie Ma. Coarse-to-fine indoor scene layout division and structure reconstruction. Laser & Optoelectronics Progress, 58, 2210018(2021).
[5] F Mei, J Liu, C B Li, et al. Interior scene reconstruction based on RGB-D depth camera. Journal of Image and Graphics, 20, 1366-1373(2015).
[6] S S Gorthi, P Rastogi, M Song. Fringe projection techniques: Whither we are?. Optics & Lasers in Engineering, 48, 130-140(2010).
[7] Y S Chen, M Xia, L Lin. Experimental study of grating phase shift method for 3D anthropometry. Journal of Textile Research, 34, 83-87(2013).
[8] Q C Zhang, Z J Wu. Three-dimensional imaging technique based on Gray-coded structured illumination. Infrared and Laser Engineering, 49, 0303004(2020).
[9] Y Zhao, J A Fu, H T Yu, et al. Defocus projection three-dimensional measurement based on deep learning accurate phase acquisition. Infrared and Laser Engineering, 49, 20200012(2020).
[10] Z R Cao, J H Dong. Application of structured light coding measurement technology in Mars high-resolution camera. Optics and Precision Engineering, 29, 1420-1429(2021).
[11] S K Nayar, G Krishnan, M D Grossberg, . et al. Fast separation of direct and global components of a scene using high frequency illumination. ACM Trans Graph, 25, 935-944(2006).
[12] [12] Chen T, Seidel H, Lensch P A. Modulated phaseshifting f 3 d scanning[C]2008 IEEE Conference on Computer Vision Pattern Recognition, 2008: 1–8.
[13] M Holroyd, J Lawrence, T Zickler. A coaxial optical scanner for synchronous acquisition of 3D geometry and surface reflectance. Acm Transactions on Graphics, 29, 1-12(2011).
[14] J Deng, J Li, H Feng, et al. Efficient intensity-based fringe projection profilometry method resistant to global illumination. Optics Express, 28, 36346-36360(2020).
[15] Q H Zhang, Q J Zhang, J H Jia, et al. Research on periodic dislocation Correction Method based on image morphology operation. Transducer and Microsystem Technologies, 40, 52-55+59(2021).
[16] J F Lei, Z Q Chen, M Zhang, et al. Improvement of phase unwrapping method for dual-frequency projection fringe. Optics and Precision Engineering, 29, 1337-1345(2021).
[17] Y Wang, L Lu, Wu J, et al. Hilbert transform based crosstalk compensation for color fringe projection profilometry. Optics Letters, 45, 2199-2202(2020).
[18] S Zhang. Flexible 3 D shape measurement using projector defocusing: Extended measurement range. Optics Letters, 35, 934-936(2010).
Get Citation
Copy Citation Text
Jinyue Liu, Xuzhe Ma, Yuemeng Cui, Luming Xue, Tiejun Li. High speed reconstruction system for indoor environments based on an adaptive interpolation filter[J]. Infrared and Laser Engineering, 2022, 51(8): 20210625
Category: Phtotoelectric measurement
Received: Aug. 30, 2021
Accepted: --
Published Online: Jan. 9, 2023
The Author Email: