141
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Rapid 3D measurement of colour objects based on three-channel sinusoidal fringe projection

, , , &
Pages 741-749 | Received 20 Oct 2021, Accepted 13 Jun 2022, Published online: 21 Jun 2022

References

  • Zhang S. Recent progresses on real-time 3D shape measurement using digital fringe projection techniques. Opt Lasers Eng. 2010;48(2):149–158.
  • Gorthi SS, Rastogi P. Fringe projection techniques: Whither we are? Opt Lasers Eng. 2010;48(2):133–140.
  • Guo YF, Da FP, Yu Y. High-quality defocusing phase-shifting profilometry on dynamic objects. Opt Eng. 2018;57(10):105105.
  • Liu H, Su W H, Reichard K, et al. Calibration-based phase-shifting projected fringe profilometry for accurate absolute 3D surface profile measurement. Opt Commun. 2003;216(1-3):65–80.
  • Zuo C, Feng S, Huang L, et al. Phase shifting algorithms for fringe projection profilometry: a review. Opt Lasers Eng. 2018;109:23–59.
  • Liu Z, Zibley PC, Zhang S. Motion-induced error compensation for phase shifting profilometry. Opt Express. 2018;26(10):12632–12637.
  • Feng SJ, Zuo C, Tao TY, et al. Robust dynamic 3-D measurements with motion-compensated phase-shifting profilometry. Opt Lasers Eng. 2018;103:127–138.
  • Yun H, Li B, Zhang S. Pixel-by-pixel absolute three-dimensional shape measurement with modified Fourier transform profilometry. Appl Opt. 2017;56(5):1472.
  • Takeda M, Mutoh K. Fourier transform profilometry for the automatic measurement of 3-D object shapes. Appl Opt. 1983;22(24):3977–3982.
  • Li J, Su X, Guo L. Improved Fourier transform profilometry for the automatic measurement ofthree-dimensional object shapes. Opt Eng. 1990;29(12):1439–1445.
  • Zhu Q, Zhao H, Zhang C, et al. Point-to-point coupling and imbalance correction in color fringe projection profilometry based on multi-confusion matrix. Meas Sci Technol. 2021;32(11):115202.
  • Wan Y, Cao Y, Chen C, et al. Single-shot real-time three dimensional measurement basedon hue-height mapping. Opt Commun. 2018;416:10–18.
  • Wu Z, Guo W, Li Y, et al. High-speed andhigh-efficiency three-dimensional shape measurementbased on gray-coded light Photon. Res. 2020: 8819–8829.
  • Flores JL, Ferrari JA, Torales GG, et al. Color-fringe pattern profilometry using ageneralized phase-shifting algorithm. Appl Opt 2015;54:8827–8834.
  • Zhu L, Cao Y, He D, et al. Grayscale imbalance correction in real-time phase measuring profilometry. Opt Commun. 2016;376:72–80.
  • Huang X, Cao Y, Yang C, et al. A Single-Shot 3D Measuring Method Based on Quadrature Phase-Shifting Color Composite Grating Projection. Appl Sci. 2021;11(6):2522.
  • Zhang S, van der Weide D, Oliver J. Superfast phase-shifting method for 3-d shape measurement. Opt Express. 2010;18(9):9684–9689.
  • Jiang C, Bell T, Zhang S. High dynamic range real-time 3D shape measurement. Opt Express 2016;24(7):7337–7346.
  • Zheng Y, Wang Y, Suresh V, et al. Real-time high-dynamic-range fringe acquisition for3D shape measurement with a RGB camera. Meas Sci Technol. 2019;30(7):075202.
  • Zhang L, Chen Q, Zuo C, et al. Real-time high dynamic range 3D measurement using fringe projection. Opt Express. 2020;28(17):24363–42378.
  • Zhang Z, Ma H, Zhang S, et al. Simple calibration of a phase-based 3D imaging system based on uneven fringe projection. Opt Lett. 2011;36(5):627–629.
  • Ina H, Takeda M, Kobayashi S. Fourier-transform method of fring-pattern analysis for computer -based topography and interferometry. Rev Sci Instrum. 2015;72(12):156–160.
  • Mouth K, Takeda M. Fourier transform profilometry for the automatic measurement of 3-D object shapes. Appl Opt. 1983;22(24):3977.
  • Zhang Y, Qu X, Li Y, et al. A separation method of superimposed gratings in double-projector fringe projection profilometry using a color camera. Applied Sciences. 2021;11(3):890.
  • Mao CL, Lu RS. Inverse error compensation method for improvement of phase recovery accuracy of multi-frequency fringe projection. Acta Opt Sin. 2018;38(4):0412005.
  • Zuo C, et al. Micro Fourier Transform Profilometry (μ FTP): 3D shape measurement at 10,000 frames per second. Opt Lasers Eng. 2018;102:70–91.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.