[1] Jiang Huilin, Fu Qiang, Zhao Yiwu, et al. Development status and trend of space information network and laser communication [J]. Journal of the Internet of Things, 2019, 3(2): 1-8. (in Chinese)
[2] Xing Zhan, Chen Xiaoyi, Peng Zhiyong, et al. Research progress and thinking of infrared aero-optical effect (Invited) [J]. Infrared and Laser Engineering, 2022, 51(4): 20220228. (in Chinese)
[3] Sun Xiwang, Liu Wei. Research progress of aero-optical effect [J]. Advances in Mechanics, 2020, 50(0): 249-309. (in Chinese)
[4] Weber D C, Trolinger J D, Rose W C. Computer simulation of aero-optic phenomena based on empirical data [J]. Optical Diagnostics for Fluids, Solids, and Combustion, 2001, 4448: 187-196. doi:  10.1117/12.449376
[5] Duffin D A, Jumper E J. Feedforward adaptive-optic correction of aero-optical aberrations caused by a two-dimensional heated jet [J]. AIAA Journal, 2011, 49(6): 1283-1291. doi:  10.2514/1.J050904
[6] Porter C, Gordeyev S, Zenk M, et al. Flight measurements of aero-optical distortions from a flat-windowed turret on the airborne aero-optics laboratory (AAOL)[C]//42nd AIAA Plasmadynamics and Lasers Conference in Conjunction with the 18th International Conference on MHD Energy Conversion (ICMHD), 2011: 3280.
[7] White M, Visbal M. Computational investigation of wall cooling and suction on the aberrating structures in a transonic boundary layer[C]//51st AIAA Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition, 2013: 720.
[8] Yin Xingliang. Principles of Aero-optics[M]. Beijing: China Astronautic Publishing House, 2003. (in Chinese)
[9] Li Guichun. Aerodynamic Optics [M]. Beijing: National Defense Industry Press, 2003. (in Chinese)
[10] Meng Lixin, Zhao Dingxuan, Zhang Lizhong, et al. Boundary layer effect and compensation in airborne laser communication [J]. Optics and Precision Engineering, 2014, 22(12): 3231-3238. (in Chinese) doi:  10.3788/OPE.20142212.3231
[11] Ding Haolin, Yi Shihe, Fu Jia, et al. Experimental investigation of aero-optical effect due to supersonic turbulent boundary layer [J]. Infrared and Laser Engineering, 2016, 45(10): 192-198. (in Chinese)
[12] Zhao Xinhai, Yi Shihe, Ding Haolin, et al. Experiment on optical path difference of supersonic semi-free jet [J]. Acta Optica Sinica, 2020, 40(7): 0701001. (in Chinese)
[13] Tan Xiaotong, Xu Heyong, Tian Renzhi. Numerical simulation of aero-optical effect of flow around typical optical windows [J]. Acta Aerodynamica Sinica, 2023, 41(6): 71-80. (in Chinese)
[14] Dong Hang, Xu Ming. Space-time characteristics of the aero-optical effect around turrets [J]. Acta Optica Sinica, 2018, 38(10): 1001002. (in Chinese)
[15] Chen Yong, Xie Weiming, Lu Daju, et al. Study on unsteady aero-optical effect of turret wake [J]. Acta Optica Sinica, 2020, 40(16): 1601001. (in Chinese)
[16] Zhang Qingpeng. Study on suppression method of aero-optical effect of beamexpanding system[D]. Chengdu: The Institute of Optics and Electronics, the Chinese Academy of Sciences, 2020. (in Chinese)
[17] Thuerey N, Weißenow K, Prantl L, et al. Deep learning methods for Reynolds-averaged Navier–Stokes simulations of airfoil flows [J]. AIAA Journal, 2020, 58(1): 25-36. doi:  10.2514/1.J058291
[18] Xu Liang, Wang Luyang, Wan Ziming, et al. Influence of different altitudes on deviation of aero-opticsimaging of 0°-15° angle of attack [J]. Infrared and Laser Engineering, 2023, 52(5): 20230411. (in Chinese)