• Opto-Electronic Engineering
  • Vol. 47, Issue 8, 190581 (2020)
Zhang Xiangchao* and Xu Min
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.12086/oee.2020.190581 Cite this Article
    Zhang Xiangchao, Xu Min. In-situ deflectometric measurement of optical surfaces for precision manufacturing[J]. Opto-Electronic Engineering, 2020, 47(8): 190581 Copy Citation Text show less
    References

    [1] Huang L, Idir M, Zuo C, et al. Review of phase measuring def-lectometry[J]. Optics and Lasers in Engineering, 2018, 107: 247–257.

    [2] Niu Z Q, Xu XY, Zhang X C, et al. Efficient phase retrieval of two-dimensional phase-shifting fringe patterns using geometric constraints of deflectometry[J]. Optics Express, 2019, 27(6): 8195–8207.

    [3] Xu Y J, Gao F, Jiang X Q. Enhancement of measurement ac-curacy of optical stereo deflectometry based on imaging model analysis[J]. Optics and Lasers in Engineering, 2018, 111: 1–7.

    [4] Xiao Y L, Su X Y, Chen WJ, et al. Three-dimensional shape measurement of aspheric mirrors with fringe reflection photo-grammetry[J]. Applied Optics, 2012, 51(4): 457–464.

    [5] Liu Y, Huang S J, Zhang Z H, et al. Full-field 3D shape mea-surement of discontinuous specular objects by direct phase measuring deflectometry[J]. Scientific Reports, 2017, 7(1): 10293.

    [6] Su P, Wang Y H, Burge J H, et al. Non-null full field X-ray mirror metrology using SCOTS: a reflection deflectometry approach[J]. Optics Express, 2012, 20(11): 12393–12406.

    [7] Zhang X C, Xu X Y, Niu Z Q, et al. Precise positioning in the in-situ deflectometric measurement of optical surfaces[J]. Pro-ceedings of SPIE, 2019, 11102: 111020S.

    [8] Graves L R, Choi H, Zhao W C, et al. Model-free deflectometry for freeform optics measurement using an iterative reconstruc-tion technique[J]. Optics Letters, 2018, 43(9): 2110–2113.

    [9] Zhang Z Y. A flexible new technique for camera calibration[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 2000, 22(11): 1330–1334.

    [10] Xu XY, Zhang X C, Niu Z Q, et al. Self-calibration of in-situ monoscopic deflectometric measurement in precision optical manufacturing[J]. Optics Express, 2019, 27(5): 7523–7536.

    [11] Li S Q, Xu C, Xie M. A robust O(n) solution to the perspec-tive-n-point problem[J]. IEEE Transactions on Software Engi-neering, 2012, 34(7): 1444–1450.

    [12] Xu X Y, Zhang XC, Niu Z Q, et al. Extra-detection-free monos-copic deflectometry for the in situ measurement of freeform specular surfaces[J]. Optics Letters, 2019, 44(17): 4271–4274.

    [13] O’Rourker J. Computational Geometry in C[M]. 2nd ed. Cam-bridge: Cambridge University Press, 1994.

    [14] Kennedy J. Particle swarm optimization[M]//Sam-mut C, Webb G I. Encyclopedia of Machine Learning. Boston, MA: Springer, 2010: 760–766.

    [15] Zhang X C, Jiang X Q, Scott P J. A reliable method of minimum zone evaluation of cylindricity and conicity from coordinate measurement data[J]. Precision Engineering, 2011, 35(3): 484–489.

    [16] Wong T T, Luk W S, Heng P A. Sampling with hammersley and halton points[J]. Journal of Graphics Tools, 1997, 2(2): 9–24.

    [17] Clerc M, Kennedy J. The particle swarm-explosion, stability, and convergence in a multidimensional complex space[J]. IEEE Transactions on Evolutionary Computation, 2002, 6(1): 58–73.

    [18] Huang R, Su P, Horne T, et al. Optical metrology of a large deformable aspherical mirror using software configurable optical test system[J]. Optical Engineering, 2014, 53(8): 085106.

    Zhang Xiangchao, Xu Min. In-situ deflectometric measurement of optical surfaces for precision manufacturing[J]. Opto-Electronic Engineering, 2020, 47(8): 190581
    Download Citation