[1] Schreiber K U, Prochazka I, Lauber P, et al. Ground-based demonstration of the European Laser Timing (ELT) experiment [J]. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 2010, 57(3): 728-737. doi:  10.1109/TUFFC.2010.1471
[2] Exertier P, Samain E, Courde C. Sub-ns comparison between calibrated GPS (CV) and T2L2 links [J]. Metrologia, 2016, 53(6): 1395. doi:  10.1088/0026-1394/53/6/1395
[3] Exertier P, Belli A, Samain E, et al. Time and laser ranging: a window of opportunity for geodesy, navigation, and metrology [J]. Journal of Geodesy, 2019, 93(11): 2389-2404. doi:  10.1007/s00190-018-1173-8
[4] Meng W, Zhang H, Huang P, et al. Design and experiment of onboard laser time transfer in Chinese Beidou navigation satellites [J]. Advances in Space Research, 2013, 51(6): 951-958. (in Chinese) doi:  10.1016/j.asr.2012.08.007
[5] Prochazka I, Yang F. Photon counting module for laser time transfer via Earth orbiting satellite [J]. Journal of Modern Optics, 2009, 56(2-3): 253-260. doi:  10.1080/09500340802155396
[6] Li Xin, Zhu Wei, Luo Qingshan, et al. kHz repetition rate mobile laser ranging system with high precision and measuring results analysis in western China [J]. Acta Photonica Sinica, 2020, 49(2): 0228001. (in Chinese)
[7] Wu Zhibo, Zhang Zhongping, Chen Juping. The Implementation of range gate control circuit with high repetition rate based on FPGA [J]. Acta Electronica Sinica, 2010, 38(4): 919-922. (in Chinese)
[8] Fan Haibo, Wu Zhibo, Zhang Haifeng, et al. A method of realization of range gate generator with high realtime [J]. Annals of Shanghai Observatory Academia Sinica, 2010(31): 170-176. (in Chinese)
[9] Wu Zhibo, Deng Huarong, Zhang Haifeng, et al. Interference and avoidance of atmospheric backscattering on satellite laser ranging with high repetition rate [J]. Infrared and Laser Engineering, 2017, 46(2): 0206002. (in Chinese)
[10] Zhang Zhongping, Zhang Haifeng, Yang Fumin, et al. Strictly control of laser firing epoch on ground in time comparison by laser pulse between satellite and ground [J]. Annals of Shanghai Observatory Academia Sinica, 2008(29): 59-66. (in Chinese)
[11] Wu Zhibo. Range Gate Generator with High Repetition Rate (RGG) [J]. Bulletin of Chinese Academy of Sciences, 2020, 35(Z1): 29. (in Chinese)
[12] Wu Zhibo, Zhang Zhongping, Zhang Haifeng, et al. The preliminary results of SLR with 10 kHz laser system at Shanghai Station [C]//Proceedings of the 18th International Workshop on Laser Ranging, ILRS, 2013: 11-15.
[13] Mendes V B, Pavlis E C. High‐accuracy zenith delay prediction at optical wavelengths [J]. Geophysical Research Letters, 2004, 31(14): 189-207.
[14] Mendes V B, Prates G, Pavlis E C, et al. Improved mapping functions for atmospheric refraction correction in SLR [J]. Geophysical Research Letters, 2002, 29(10): 53-1-53-4. doi:  10.1029/2001GL014394
[15] Drożdżewski M, Sośnica K, Zus F, et al. Troposphere delay modeling with horizontal gradients for satellite laser ranging [J]. Journal of Geodesy, 2019, 93(10): 1853-1866. doi:  10.1007/s00190-019-01287-1
[16] Yang Fumin, Zhuang Qixiang, Tan Detong. System analysis and relativistic correction for time comparison experiment via laser pulses [J]. Acta Metrologica Sinica, 1984(3): 218-222. (in Chinese)