[1] Wenhan JIANG. Adaptive optics technology. Chinese Journal of Nature, 28, 7(2006).
[2] P S SALTER, M J BOOTH. Adaptive optics in laser processing. Light-Science & Applications, 8, 16(2019).
[3] L C SUN, Y D GUO, C F SHAO et al. 10.8 kW, 2.6 times diffraction limited laser based on a continuous wave Nd∶YAG oscillator and an extra-cavity adaptive optics system. Optics Letters, 43, 4160-4163(2018).
[4] M AZIMIPOUR, R S JONNAL, J S WERNER et al. Coextensive synchronized SLO-OCT with adaptive optics for human retinal imaging. Optics Letters, 44, 4219-4222(2019).
[5] C H LI, H XIAN, W H JIANG et al. Performance analysis of field-of-view shifted Shack–Hartmann wavefront sensor based on splitter. Applied Physics B, 88, 367-372(2007).
[6] C H LI, H XIAN, W H JIANG et al. Analysis of wavefront measuring method for daytime adaptive optics. Acta Physica Sinica, 56, 4289-4296(2007).
[7] C H LI, H XIAN, C RAO et al. Field-of-view shifted Shack-Hartmann wavefront sensor for daytime adaptive optics system. Optics Letters, 31, 2821-2823(2006).
[8] Chaohong LI. Research on performance of Hartmann wavefront sensor based on field shift in daytime conditions(2007).
[9] J D GONGLEWSKI, R G HIGHLAND, D C DAYTON et al. ADONIS: daylight imaging through atmospheric turbulence, 2827, 152-161(1996).
[10] M ZHU, X H SHEN, C WU. Study of star image detecting technology in daytime strong background, 1, 745-748(2004).
[11] Z Q LI, X Y LI. Centroid computation for Shack-Hartmann wavefront sensor in extreme situations based on artificial neural networks. Optics Express, 26, 31675-31692(2018).
[12] Yu LIU. Infrared image background estimation based on adaptive surface fitting. Science and Technology Innovation Review, 38-40(2012).
[13] Kun LI, Hui LI, Yunjie LIU et al. B-spline surface fitting background suppression of LCD Mura defects. Opto-electronic Engineering, 41, 33-39(2014).
[14] Yang GAO, Yanjun LI, Ke ZHANG. Surface fitting segmentation of infrared image under heterogeneous background. Opto-electronic Engineering, 33, 83-87(2006).
[15] J J LIFTON, T LIU, J MCBRIDE. Non-linear least squares fitting of Bézier surfaces to unstructured point clouds. AIMS Mathematics, 6, 3142-3159(2021).
[16] A F WAHAB, M I E ZULKIFLY. 3-Tuple Bézier surface interpolation model for data visualization. IAENG International Journal of Applied Mathematics, 50, 1-7(2020).
[17] Tao SONG, Jihui QI, Peiguo HOU et al. Geometric optimization method of projection image based on Bezier surface. Journal of Yanshan University, 45, 449-455(2021).
[18] Xuxu LI. Research on sub-spot location Algorithm of point source target Hartmann sensor with low signal-to-noise ratio(2018).
[19] K L BAKER, M M MOALLEM. Iteratively weighted centroiding for Shack-Hartmann wave-front sensors. Optics Express, 15, 5147-5159(2007).
[20] E C FEST. Stray light analysis and control(2013).
[21] M A FORTES, E MEDINA. Fitting missing data by means of adaptive meshes of Bézier curves. Mathematics and Computers in Simulation, 191, 33-48(2022).
[22] Xinxiong ZHU. Free curve and surface modeling technology(2000).
[23] J K SING, K KHAN, D K BASU et al. Polynomial surface fitting based method for retrospective correction of intensity inhomogeneity in MR images, 405-409(2011).
[24] Dongren CHEN, Guojin WANG. Developable Bezier function surface. Progress in Natural Science, 5, 65-69(2002).
[26] Yu LIU, Jianhua HUANG, Chuanjiang ZHAO et al. Experimental study on background noise suppression when focusing through scattering medium. Acta Photonica Sinica, 52, 0129001(2023).
[27] Xiang LIU, Lihua ZHANG, Zeyuan DAI et al. A parameter-free denoising method for ICESat-2 point cloud under strong noise. Acta Photonica Sinica, 51, 1110002(2022).