Técnicas de perfilometría en color: Una Revisión
N. Tornero-Martínez, G. Trujillo-Schiaffino, M. Anguiano-Morales, P. G. Mendoza-Villegas, D.P. Salas-Peimbert, L.F. Corral-Martínez
Descargar artículo
Información básica
Volumen
V51 - N4 / 2018 Ordinario
Referencia
51001:1-26
DOI
http://doi.org/10.7149/OPA.51.4.51001
Idioma
English
Etiquetas
Perfilometría, luz estructurada, perfilometría en color
Resumen
La luz estructurada es ampliamente investigada en el área de perfilometría tridimensional, por su capacidad de obtener información de la superficie de un objeto rápidamente a partir de una serie de imágenes. Por lo cual existe una gran diversidad de técnicas que se utilizan actualmente, entre las cuales se encuentra el uso de color para la codificación de patrones. El utilizar codificación en color proporciona la capacidad de obtener información adicional de una sola imagen, para obtener reconstrucciones más rápidamente y con mejor resolución. En este artículo se propone una nueva clasificación para los patrones de luz estructurada en color y se presenta un resumen de las diferentes técnicas.
Referencias
T. Yoshizawa. Handbook of Optical Metrology. Taylor & Francis Group (2009).
S. Zhang. Handbook of 3D Machine Vision. Taylor & Francis Group (2013).
K. Harding. Handbook of Optical Dimensional Metrology. Taylor & Francis Group (2013).
J. Geng, "Structured-light 3D surface imaging: a tutorial," Adv Opt Photonics 3, 128-160 (2011).
S. S. Gorthi, P. Rastogi, "Fringe projection techniques: Wither we are?," Opt Lasers Eng 48, 133-140 (2010).
J. Salvi, S. Fernandez, T. Pribanic, X. Llado. "A State of the art in structured light patterns for Surface profilometry," Pattern Recognit 43, 2666-2680 (2010).
J. Salvi, J. Pagés, J. Batlle. "Pattern codification strategies in structured light systems," Pattern Recognit 37, 827-849 (2004).
J. Batlle, E. Mouaddib, J. Salvi. "Recent progress in coded structured light as a technique to solve the correspondence problem: a survey," Pattern Recognit 31, 963-982 (1998).
A. Silva Mejía. "Reconstrucción 3D de Objetos, empleando proyección de patrones binarios y algoritmos de corrimiento de fase," Master's thesis, Universidad de Guadalajara, México, 2013.
Y. Y. López Domínguez, A. Martínez, J. A. Rayas. "Topometry and color association by RGB fringe projection technique," Rev Mex Fís 60, 109-113 (2014).
D. Malacara, M. Servín, Z. Malacara. "Interferogram analysis for optical testing," Taylor & Francis Group (2005).
D. Malacara. Optical Shop Testing. John Wiley & Sons, Inc., 506-524 (1992).
K. J. Gasvik. Optical metrology. John Wiley & Sons, Inc., 178-186 (2002).
A. Martínez, J. A. Rayas, J. M. Flores M., R. Rodríguez-Vera, D. Donato Aguayo. "Técnicas ópticas para el contorneo de superficies tridimensionales," Rev Mex Física 51, 431-436 (2005).
P. S. Huang, Q. Hu, F. Jin, F. P. Chiang. "Color-encoded digital fringe projection technique for high-speed three-dimensional surface contouring," Opt Eng 38, 1065-1071 (1999).
J. Pan, P. S. Huang, F. P. Chiang. "Color phase-shifting technique for three-dimensional shape measurement," Opt Eng 45, 0136021-0136029 (2006).
W. Yin, X. Cheng, J. Xie, H. Cui, Y. Chen. "High-speed 3D profilometry employing HSI color model for color surface with discontinuities," Opt Lasers Eng 96, 81-87 (2017).
J. L. Flores, A. Muñoz, S. Ordoñes, G. García-Torales, J. A. Ferrari. "Color-fringe pattern profilometry using an efficient iterative algorithm," Opt Commun 391, 88-93 (2017).
C. Je, S. W. Lee, R. H. Park. "Color-phase analysis for sinusoidal structured light in rapid range imaging," Proc 6th Asian Conf Compu Vis 1, 270-275 (2004).
Y. Hu, J. Xi, J. Chicharo, Z. Yang. "Blind color isolation for color-channel-based fringe pattern profilometry using digital projection," J Opt Soc Am 24, 2372-2382 (2007).
F. Da, H. Huang. "A novel color fringe projection based Fourier transform 3D shape measurement method," Optik 123, 2233-2237 (2012).
M. Padilla, M. Servin, G. Garnica. "Fourier analysis of RGB fringe-projection profilometry and robust phase-demodulation methods against crosstalk distortion," Opt Express 24, 15417-15428 (2016).
O. A. Skydan, M. J. Lalor, D. R. Burton. "Technique for phase measurement and surface reconstruction by use of colored structured light," Appl Optics 41, 6104-6117 (2002).
O. E. Castillo, R. Legarda-Sáenz, J. L. Flores, G. García-Torales. "Measurement of phase objects by the use of color phase-shifting technique," Proc SPIE 8867, 8867101-8867106 (2013).
S. Zhang, P. S. Huang. "High-resolution, real-time three-dimensional shape measurement," Opt Eng 45, 1236011-1236018 (2006).
S. Zhang, S. T. Yau. "High-speed three-dimensional shape measurement system using a modified twoplus-one phase-shifting algorithm." Opt Eng 46, 113603-1 - 113603-6 (2007).
S. Zhang, P. S. Huang. "High-resolution, real-time 3D shape acquisition," Proc IEEE Compu Vis Pattern Recognit 3, 28-37 (2004).
S. Zhang. "High-resolution, real-time 3D shape measurement," PhD thesis, Stony Brook University, State University of New York (2005).
Z. Zhang, C. E. Towers, D. P. Towers. "Time efficient color fringe projection system for 3D shape and color using optimum 3-frequency selection," Opt Express 14, 6444-6455 (2006).
W. H. Su. "Color-encoded fringe projection for 3D shape measurements." Opt Express 15, 13167-13181 (2007).
H. J. Chen, J. Zhang, D. J. Lv, J. Fang. "3-D shape measurement by composite pattern projection and hybrid processing," Opt Express 15, 12318-12330 (2007).
P. Fong, F. Buron. "Sensing deforming and moving objects with commercial off the shelf hardware," in IEEE Compu Vis and Pattern Recognit (CVPR) 3, 101-108 (2005).
P. Fong, F. Buron. "High-resolution three-dimensional sensing of fast deforming objects," in IEEE/RSJ Int Conf Intell Robots Syst, 1606-1611 (2005).
Cheng, Q. Du, Y. Jiang. "Color fringe projection profilometry using geometric constraints," Opt Commun 398, 39-43 (2017).
W. Li, S. Duan, Z. Yin. "Phase unwrapping for large discontinuous surface based on color fringe projection," in 2012 Int Conf Info Tech Mngmt Sci (ICITMS), 563-574 (2013).
F. Da, L. Wang, L. Hu. "Fringe projection profilometry based on complimentary color-encoded fringe patterns," Opt Laser Technol 44, 2332-2339 (2012).
G. A. Ayubi, J. M. Di Martino, J. L. Flores, J. A. Ferrari. "Binary coded linear fringes for three-dimensional shape profiling," Opt Eng 51, 1036011-1036016 (2012).
M. Anguiano-Morales, G. Garnica, E. N. Arias, L. Fernando M., D. P. Salas-Peimbert, G. Trujillo-Schiaffino. "Shape and colour texture of a prehispanic piece by combining fringe projection and colour image fusion," in FiO/LS XXVIII, (2012).
K. Chen, J. Xi, Y. Yu, S. Tong, Q. Guo. "Three-dimensional Measurement of Object Surfaces with Complex Shape and Color Distribution Based on Projection of Color Fringe Patterns," Appl Opt 52, 7360-7366 (2013).
D. Caspi, N. Kiryati, J. Shamir. "Range imaging with adaptive color structured light," IEEE Trans Pattern Analysis Mach Intell 20, 470-480 (1998).
J. Tajima, M. Iwakawa. "3-D Data Acquisition by Rainbow Range Finder," in Proc. 10th Int Conf Pattern Recognit, 309-313 (1990).
Z. J. Geng. "Rainbow three-dimensional camera: new concept of high-speed three-dimensional vision systems," Opt Eng 35, 376-383 (1996).
H. Yingming, Z. Feng, Xu Xinping. "Spectral-analysis-based range image acquiring method," in Int. Symp. On Multspectral Image Processing 3545, 58-61 (1998).
C. K. Yee, K. S. Yen. "Single frame profilometry with rapid phase demodulation on colour-coded fringes," Opt Commun 397, 44-50 (2017).
S. Barone, A. Paoli, A. V. Razionale. "A coded structured light system based on primary color stripe projection and monochrome imaging," Sensors 13, 13802-13819 (2013).
L. Zhang, B. Curless, S. M. Seitz. "Rapid shape acquisition using color structured light and multi-pass dynamic programming," in Proc 1st Int Symp 3D Data Process Visual Trans, 24-36 (2002).
P. Fechteler, P. Eisert. "Adaptive color classification for structured light systems," IET Comp Vis 3, 49- 59 (2009).
J. Pages, J. Salvi, C. Collewet, J. Forest. "Optimised De Bruijn patterns for one-shot shape acquisition," Image Vis Compu 23, 707-720 (2005).
S. Fernandez, J. Salvi. "A novel structured light method for one-shot dense reconstruction," in IEEE 19th Int Conf Image Process (ICIP), 9-12 (2012).
H. J. Chen, J. Zhang, J. Fang. "Surface height retrieval based on fringe shifting of color-encoded structured light pattern," Opt Letters 33, 1801-1803 (2008).
X. Zhang, L. Zhu. "Determination of edge correspondence using color codes for one-shot shape aquisition," Opt Lasers Eng 49, 97-103 (2011).
X. Zhang, Y. Li, L. Zhu. "Color Code Identification in Coded Structure Light," Appl Opt 51, 5340-5356 (2012).
F. H. Cheng, C. T. Lu, Y. S. Huang. "3D object scanning system by coded structured light," in IEEE 3rd Int Symp E-Comm Secur (ISECS), 213-217 (2010).
C. Je, S. W. Lee, R. H. Park. "High-contrast color-stripe pattern for rapid structured-light range imaging," in Proc. 8th European Conf Compu Vis, 95-107 (2004).
K. L. Boyer, A. C. Kak. "Color-encoded structured light for rapid active ranging," IEEE Trans Pattern Analysis Mach Intell 9, 14-28 (1987).
H. Kawasaki, R. Furukawa, R. Sagawa, Y. Yagi. "Dynamic scene shape reconstruction using a single structured light pattern," in IEEE Conf Compu Vis Pattern Recognit (CVPR), 1-8 (2008).
O. Ulusoy, F. C., G. Taubin. "One-shot scanning using De Bruijn spaced grids," in IEEE 12th Int Conf Compu Vis Wksp (ICCVW), 1786-1792 (2009).
R. Sagawa, H. Kawasaki, S. Kiyota, R. Furukawa. "Dense one-shot 3D reconstruction by detecting continuous regions with parallel line projection," in IEEE Int Conf Compu Vis, 1911-1918 (2011).
J. Salvi, J. Batlle, E. Mouaddib. "A robust-coded pattern projection for dynamic 3D scene measurement," Pattern Recognit Lett 19, 1055-1065 (1998).
Z. Song, C. K. R. Chung. "Determining both surface position and orientation in structured-light-based sensing," IEEE Trans Pattern Analysis Mach Intell 32, 1770-1780 (2010).
H. Lin, L. Nie, Z. Song. "A single-shot structured light means by encoding both color and geometrical features," Pattern recognit 54, 178-189 (2016).
S. Y. Chen, Jianwei Zhang. "Vision processing for realtime 3-D data acquisition based on coded structured light," IEEE Trans Image Process 17, 167-176 (2008).
D. Desjardins, P. Payeur. "Dense stereo range sensing with marching pseudo-random patterns," in IEEE 4th Canadian Conf Compu Robot Vis (CRV), 216-226 (2007).
H. J. W. Spoelder, F. M. Vos, E. M. Petriu, F. C. A. Groen. "Some aspects of pseudo random binary arraybased surface characterization," IEEE Trans Instrum Meas 49, 1331-1336 (2000).
A. Adán, F. Molina, L. Morena. "Disordered patterns projection for 3D motion recovering," in Proc 2nd Int Symp 3D Data Process, Visual Trans (3DPVT'04), 262-269 (2004).
A. Adán, F. Molina, A. S. Vázquez, L. Morena. "3D Feature tracking using a dynamic structured light system," in IEEE 2nd Canadian Conf Compu Robot Vis, 168-175 (2005).
R. A. Morano, C. Ozturk, R. Conn, S. Dubin, S. Zietz, J. Nissanov. "Structured light using pseudorandom codes," IEEE Trans Pattern Analysis Mach Intell 20, 322-327 (1998).
C. J. Davies, M. S. Nixon. "A Hough transform for detecting the location and orientation of threedimensional surfaces via color encoded spots," IEEE Trans Syst Man Cybern 28, 90-95 (1998).
C. Albitar, P. Graebling, C. Doignon. "Robust structured light coding for 3D reconstruction," in IEEE 11th Int Conf Compu Vis (ICCV), 1-6, (2007).
N. Tornero-Martínez, G. Trujillo-Schiaffino, D. P. Salas-Peimbert, M. Anguiano-Morales, L. F. CorralMartínez, and I. A. Garduño-Wilches, "3-D Surface Profilometry by Direct Color-Fringe Identification and an Orthogonal Setup," in OSA Imag Appl Opt, paper JTu4A.34 (2018).
C. Je, K. H. Lee, S. W. Lee. "Multi-projector color structured-light vision," Sig Process: Image Commun 28, 1046-1058 (2013).
S. S. Gorthi, P. Rastogi, "Fringe projection techniques: Wither we are?," Opt Lasers Eng 48, 133-140 (2010).