• Infrared and Laser Engineering
  • Vol. 48, Issue 6, 603010 (2019)
Yan Hao1, Long Jun1, Liu Chiyue1, Pan Shuyuan1, Zuo Chao2, and Cai Ping1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/irla201948.0603010 Cite this Article
    Yan Hao, Long Jun, Liu Chiyue, Pan Shuyuan, Zuo Chao, Cai Ping. Review of the development and application of deformation measurement based on digital holography and digital speckle interferometry[J]. Infrared and Laser Engineering, 2019, 48(6): 603010 Copy Citation Text show less
    References

    [1] Bettens S, Yan H, Blinder D, et al. Studies on the sparsifying operator in compressive digital holography[J]. Opt Express, 2017, 25(16): 18656-18676.

    [2] Asundi A, Cai P, Hao Y, et al. Investigation of the systematic axial measurement error caused by the space variance effect in digital holography[J]. Opt Lasers Eng,2018, 112: 16-25.

    [3] Hao Y, Asundi A. Impact of charge-coupled device size on axial measurement error in digital holographic system[J]. Opt Lett, 2013, 38 (8): 1194-1196.

    [4] Yan F, Yan H, Yu Y, et al. The suppression of phase error by applying window functions to digital holography[J]. Opt Lasers Eng, 2016, 86: 206-215.

    [5] Bhaduri B, Kothiyal M P, Mohan N K. A comparative study of phase-shifting algorithms in digital speckle pattern interferometry[J]. Optik, 2008, 119(3): 147-152.

    [6] North Morris M, Millerd J, Brock N, et al. Dynamic phase-shifting electronic speckle pattern interferometer[J]. Opt Manuf Test, 2005, 5869: 58691B.

    [7] Awatsuji Y. Parallel phase-shifting digital holography[J]. Multi-Dimensional Imaging, 2014, 85(6): 1069-1071.

    [8] Cai L Z, Liu Q, Yang X L. Reply to comment on "phase-shift extraction and wave-front reconstruction in phase-shifting interferometry with arbitrary phase steps"[J]. Opt Lett, 2004, 29(19): 1808-1810.

    [9] Kao C C, Yeh G B, Lee S S, et al. Phase-shifting algorithms for electronic speckle pattern interferometry[J]. Appl Opt, 2007, 41(1): 46-54.

    [10] He X, Nguyen C V, Pratap M, et al. Automated Fourier space region-recognition filtering for off-axis digital holographic microscopy[J]. Biomed Opt Express, 2016, 7 (8): 3111-3123.

    [11] Arai Y. Electronic speckle pattern interferometry based on spatial information using only two sheets of speckle patterns[J]. J Mod Opt, 2014, 61(4): 297-306.

    [12] Cuche E, Marquet P, Depeursinge C. Spatial filtering for zero-order and twin-image elimination in digital off-axis holography[J]. Appl Opt, 2008, 39(23): 4070-4075.

    [13] De la Torre Ibarra M H, Flores Moreno J M, Aguayo D D, et al. Displacement measurements over a square meter area using digital holographic interferometry[J]. Opt Eng, 2014, 53(9): 092009.

    [14] Vandenrijt J F, Thizy C, Martin L, et al. Digital holographic interferometry in the long-wave infrared and temporal phase unwrapping for measuring large deformations and rigid body motions of segmented space detector in cryogenic test[J]. Opt Eng, 2016, 55(12): 121723.

    [15] Wang Y H, Feng J Y, Wang X, et al. Shearing speckle interfermometry based on slit aperture for dynamic measurement[J]. Optics and Precision Engineering, 2015, 23(3): 645-651. (in Chinese)

    [16] Liu K, Wu S J, Gao X Y, et al. Simultaneous measurement of in-plane and out-of-plane deformations using dual-beam spatial-carrier digital speckle pattern interferometry[J]. Appl Mech Mater, 2015, 782: 316-325.

    [17] Kemao Q. Two-dimensional windowed Fourier transform for fringe pattern analysis: principles, applications and implementations[J]. Opt Lasers Eng, 2007, 45(2): 304-317.

    [18] Xiao Q, Li J, Zeng Z. A Denoising scheme for DSPI phase based on improved variational mode decomposition[J]. Mech Syst Signal Process, 2018, 110: 28-41.

    [19] Zhao M, Kemao Q. Quality-guided phase unwrapping implementation: An improved indexed interwoven linked list[J]. Appl Opt, 2014, 53(16): 3492-3500.

    [20] Schwede R, Babovsky H, Kiessling A, et al. Measurement of three-dimensional deformation vectors with digital holography and stereophotogrammetry[J]. Opt Lett, 2012, 37(11): 1943-1945.

    [21] Yan H, Pan B. Three-dimensional displacement measurement based on the combination of digital holography and digital image correlation[J]. Opt Lett, 2014, 39(17): 5166-5169.

    [22] Khaleghi M, Lu W, Dobrev I, et al. Digital holographic measurements of shape and three-dimensional sound-induced displacements of tympanic membrane[J]. Opt Eng, 2013, 52 (10): 101916.

    [23] Kulkarni R, Rastogi P. Three-dimensional displacement measurement from phase signals embedded in a frame in digital holographic interferometry[J]. Appl Opt, 2015, 54 (11): 3393-3397.

    [24] Jiang Y P, Wu S J, Yang L X, et al. Simultaneous measurement of contour and micro-deformation using full-field optical methods[J]. Journal of Appl Opt, 2017, 38(1): 67-71. (in Chinese)

    [25] López U U, Hernández-Montes M del S, Mendoza-Santoyo F. Fully automated digital holographic interferometer for 360Deg contour and displacement measurements[J]. Opt Eng, 2016, 55(12): 121719.

    [26] Li P F, Cai P, Long J, et al. Measurement of out-of-plane deformation of curved objects with digital speckle pattern interferometry[J]. Chinese Optics Letters, 2018, 16(11): 111202. (in Chinese)

    [27] Ma J, Wang Y H, An D, et al. Three-dimensional object shape measurement based on deflection method[J]. Tool Eng, 2014, 48(6): 80-83. (in Chinese)

    [28] Song C, Guru Prasad A S, Chan K H K, et al. Characterization and optimization of illumination vector for contouring surface form and feature using DSPI[J]. Rev Sci Instrum, 2016, 87(6): 063116.

    [29] Stipcevic M, Demoli N, Skenderovic H, et al. Effective procedure for determination of unknown vibration frequency and phase using time-averaged digital holography[J]. Opt Express, 2017, 25(9): 10241-10254.

    [31] Statsenko T, Chatziioannou V, Moore T, et al. Deformation reconstruction by means of surface optimization Part II: time-resolved electronic speckle pattern interferometry[J]. Appl Opt, 2017, 56(3): 654-661.

    [32] Oliveira G N, Rodrigues D M C, Nunes L C S, et al. Digital Fourier transform holography applied to investigate mechanical deformation in polymers[J]. Opt Lasers Eng, 2012, 50(12): 1798-1803.

    [33] Furlong C, Dobrev I, Rosowski J, et al. Assessing eardrum deformation by digital holography[J]. SPIE Newsroom, 2013: 4612-4614.

    [34] Xia P, Ri S, Wang Q, et al. Nanometer-order thermal deformation measurement by a calibrated phase-shifting digital holography system[J]. Opt Express, 2018, 26(10): 12594-12604.

    [35] Kumar M, Birhman A S, Kannan S. Measurement of initial displacement of canine and molar in human maxilla under different canine retraction methods using digital holographic interferometry[J]. Opt Eng, 2018, 57(9): 094106.

    [36] Maile N C, Mahadik S B, Takale M V, et al. Surface deformation studies of MnO2 film by double exposure digital holographic interferometry technique[J]. Mater Res Express, 2019, 6(4): 1-8.

    [37] Li B, Yang G B. Electronic speckle pattern interferometry method applied to measurement of shrinkage deformation of light-cured composite resin[J]. Journal of Tongji University (Natural Science), 2012, 40(1): 133-136. (in Chinese)

    [38] Xu X, Wang K F, Gu G Q, et al. Measurement of internal material flaws based on out-of-plane displacement digital speckle pattern interferometry[J]. Laser Tech, 2012, 36(4): 548-552. (in Chinese)

    [39] Kumar M, Shakher C, Agarwal R, et al. Deformation measurements in cortical bone-miniscrew interface in human maxilla by using digital speckle pattern interferometry [C]//SPIE, 2018, 10834: 1083412.

    [40] Gao C, Gao Z, Wang X, et al. Real-time measurement of microcantilever displacement based on linnik microscopic speckle interferometer[J]. Opt Eng, 2018, 57(12): 124101.

    [41] Rajput S K, Matoba O, Awatsuji Y. Characteristics of vibration frequency measurement based on sound field imaging by digital holography[J]. OSA Contin, 2018, 1(1): 200-212.

    [42] Gandhi P S, Deepak S A, Agrawal P. Experimental measurement of vibration of liquid droplet at low bond numbers using ESPI[C]//Fluid Mechanics and Fluid Power-Contemporary Research, 2017: 1371-1379.

    [43] Ma Y H, Tao N, Dai M L, et al. Investigation on vibration response of aluminum foam beams using speckle interferometry[J]. Exp Tech, 2018, 42(1): 69-77.

    [44] Mrozek P, Mrozek E, Werner A. Electronic speckle pattern interferometry for vibrational analysis of cutting tools[J]. Acta Mech Autom, 2018, 12(2): 135-140.

    Yan Hao, Long Jun, Liu Chiyue, Pan Shuyuan, Zuo Chao, Cai Ping. Review of the development and application of deformation measurement based on digital holography and digital speckle interferometry[J]. Infrared and Laser Engineering, 2019, 48(6): 603010
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