[1] Erkmen B I, Moision B E, Brinbaum K M. A review of the information capacity of single-mode free-space optical communication[C]//SPIE, 2010, 7587: 0N-1-12.
[2] Toshiyuki Ando, Eisuke Haraguchi, Kenichi Tajima, et al. Coherent homodyne receiver with a compensator of Doppler shifts for inter orbit optical communication[C]//SPIE, 2011, 7923: 0J-1-11.
[3] Hemmati H, Farr W H, Biswas A, et al. Deep-space optical terminals(DOT)[C]//SPIE, 2011, 7923: 0C-1-10.
[4] Shiro Yamakawa, Tatsuyuki Hanada, Hiroki Kohata, et al. JAXA′s efforts toward next generation space data-relay satellite using optical inter-orbit communiation technology[C]//SPIE, 2010, 7587: 0P-1-6.
[5] Tatsuyuki Hanada, Shiro Yamakawa, Hiroki Kohata. Study of optical inter-orbit communication technology for next generation space data-relay satellite[C]//SPIE, 2011, 7923: 0B-1-6.
[6] Sun Jianfeng, Hou Peipei, Ma Xiaoping, et al. Orthogonal Phase Modulation with self homodyne detect laser communication method for the satellite-to-ground link[C]//SPIE, 2015, 9614: 0Y1-6.
[8] Jiang Huilin, Liu Xianzhu, Hu Yuan, et al. Several key problems of space-ground[J]. 2014, 35(s1): 96-100. (in Chinese)
[9] Lou Yan, Zhao Yiwu, Tong Shoufeng, et al. Solar radiation impact on GEO satellite to ground laser communication[J]. Computer Simulation, 2015, 32(3): 234-237. (in Chinese)
[10] Li Xiaoming, Zhang Lizhong, Han Cheng, et al. Design of optimization-baffle for GEO laser communication[J]. Chinese Journal of Lasers, 2015, 42(9): 0905006. (in Chinese)
[11] Li Feilong, Lu Chao, Li Wei, et al. HPOP-based Doppler Frequency-Shift and Time-Delay of Polar Orbit Constellation Satellite[J]. Communications Technology, 2016, 49(1): 18-23. (in Chinese)