[1] Meng Xixi, Feng Huajun, Xu Zhihai. Autofocus method for scanning remote sensing cameras [J]. Applied Optics, 2015, 54(20): 6351-6359. doi:  10.1364/AO.54.006351
[2] 陈志超. 基于R-C系统的长焦距航空相机实时相位检焦技术研究[D]. 长春: 中国科学院长春光学精密机械与物理研究所, 2016.

Chen Zhichao. Research on real-time phase detection auto focus technique of long focus airborne camera based on R-C optical system[D]. Changchun: Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, 2016. (in Chinese)
[3] Zheng Lina, Li Yanwei, Yuan Guoqin, et al. Automatic focus plane detection of aerial remote camera based on visibility [J]. Infrared and Laser Engineering, 2014, 43(3): 236-241. (in Chinese)
[4] 孟繁浩. 基于图像处理的自动检焦技术在航空相机中的应用研究[D]. 长春: 中国科学院长春光学精密机械与物理研究所, 2012.

Meng Fanhao. Study on the application of autofocus technique based on image processing technology in aerial camera[D]. Changchun: Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, 2016. (in Chinese)
[5] Li Qihui, Ding Yalin, Xiu Jihong, et al. A self-collimation focusing method based on image processing [J]. Advances in Laser and Optoelectronics, 2020, 57(2): 021104. (in Chinese)
[6] Zheng Lina, Kuang Haipeng, Li Wenming, et al. Method of pedestal component elimination based on line CCD for spatial-filter velocimetry signal [J]. Journal of Optics, 2014, 34(2): 0211001. (in Chinese)
[7] 郑丽娜. 航空相机高精度速高比测量技术的研究[D]. 长春: 中科院长春光学精密机械与物理研究所, 2013.

Zheng Lina. Research on high precision Speed-to-height ratio measurement technology of aerial camera[D]. Changchun: Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, 2013. (in Chinese)
[8] Zheng Lina, Zhang Tao, Kuang Haipeng, et al. Image motion velocity measurement technique based on spatial filtering effect of linear array CCD for aerial remote camera [J]. Journal of Optics, 2012, 32(11): 1112002. (in Chinese)
[9] Zheng Lina, Li Yanwei. SFV spatial filtering characteristics of rectangle spatial filter [J]. Infrared and Laser Engineering, 2013, 43(S2): 472-475. (in Chinese)
[10] Xu Zhaolin, Zhao Yuliang, Zhang Guodong, et al. Design of an auto-focusing system for a new type of aerial camera [J]. Electronics Optics & Control, 2011, 18(4): 77-80. (in Chinese) doi:  10.3969/j.issn.1671-637X.2011.04.019
[11] Lu Zhenhua, Guo Yongfei, Li Hongfa, et al. Auto-focus using LSF in aerial push-broom remote-sensing camera [J]. Infrared and Laser Engineering, 2012, 41(7): 1808-1814. (in Chinese) doi:  10.3969/j.issn.1007-2276.2012.07.023
[12] Ator J T. Image velocity sensing with parallel-slit reticles [J]. Journal of the Optical Society of America, 1963, 53(12): 1416-1422. doi:  10.1364/JOSA.53.001416
[13] Cai Guixia, Qian Weixian, Yang Jinqing, et al. Pulse laser ranging technique based on differential signal time discrimination method [J]. Infrared and Laser Engineering, 2019, 48(12): 1205001. (in Chinese)
[14] Meng Fanhao, Ding Yalin, Wang Dejiang, et al. Analysis of influence of image motion on auto-focus precision for high resolution aerial camera [J]. Journal of Optics, 2015, 35(6): 73-80. (in Chinese)
[15] Yan Dejie, Xu Shuyan, Han Chengshan. The influence of aircraft attitude on image motion compensation of space camera [J]. Optics and Precision Engineering, 2008, 16(11): 2219-2203. (in Chinese)