[1] Zeng Fei, Gao Shijie, San Xiaogang, et al. Development status and trend of airborne laser communication terminals[J]. Chinese Optics, 2016, 9(1):65-73. (in Chinese)曾飞, 高世杰, 伞晓刚, 等. 机载激光通信系统发展现状与趋势[J]. 中国光学, 2016, 9(1):65-73.
[2] Boroson D M, Robinson B S. The lunar laser communication demonstration:NASA's first step toward very high data rate support of science and exploration missions[J]. Space Sci Rev, 2014, 185:115-128.
[3] Raible D E, Romanofsky R R, Budinger J M, et al. On the physical realizability of hybrid RF and optical communications platforms for deep space applications[C]//AIAA International Comimunications Satellite Systems Conference, 2014.
[4] Cornwell D M. NASA's Optical communications program for 2015 and beyond[C]//SPIE, 2015, 9354:1-6.
[5] Engin D, Burton J, Darab I, et al. 1030 nm Yb-fiber-MOPA based, multi-aperture high-power, high energy uplink laser beacon for deep space communication[C]//SPIE, 2014, 8971:1-11.
[6] Ma J, Jiang Y, Tan L, et al. Influence of beam wander on bit-error rate in a ground-to-satellite laser uplink communication system[J]. Opt Lett, 2008, 33(22):2611-2613.
[7] Liu Jinhua, Wang Yanlong, Dai Jisheng. Linear MIMO precoder optimization with maximizing channel capacity under joint power constraints[J]. Optics and Precision Engineering, 2015, 23(10z):599-604. (in Chinese)刘金华, 汪彦龙, 戴继生. 联合能量约束下最大信道容量的线性多输入多输出预编码设计[J]. 光学精密工程, 2015, 23(10z):599-604.
[8] Wang Huiqin, Wang Xue, Cao Minghua. Bit error rate of optical multiple input multiple output system in correlated channel[J]. Optics and Precision Engineering, 2016, 24(9):2142-2148. (in Chinese)王惠琴, 王雪, 曹明华. 相关信道中光多输入多输出系统的误码率[J]. 光学精密工程, 2016, 24(9):2142-2148.
[9] Chen Mu, Ke Xizheng. Effect of atmospheric turbulence on the performance of laser communication system[J]. Infrared and Laser Engineering, 2016, 45(8):0822009. (in Chinese)陈牧, 柯熙政. 大气湍流对激光通信系统性能的影响研究[J]. 红外与激光工程, 2016, 45(8):0822009.
[10] Huang Long, Zhang Wenhui. Error calculation of periscope pointing assembly for laser communication[J]. Chinese Optics, 2015, 8(5):840-846. (in Chinese)黄龙, 张文会. 潜望式激光通信瞄准机构误差计算[J]. 中国光学, 2015, 8(5):840-846.
[11] Wang Yi, Wang Deli, Du Fan, et al. Analysis of channel capacity empoying circle polarization shift keying over Gamma-Gamma atmospheric turbulence channel[J]. Infrared and Laser Engineering, 2015, 44(10):3084-3091. (in Chinese)王怡, 王德丽, 杜凡, 等. 大气Gamma-Gamma湍流信道中采用圆偏振位移键控的信道容量分析[J]. 红外与激光工程, 2015, 44(10):3084-3091.
[12] Andrews L C, Phillips R L. Laser Beam Propagation Through Random Media[M]. Bellingham:SPIE Optical Engineering Press, 1998:223-243.
[13] Davidson F M, Sun X. Gaussian approximation versus nearly exact performance analysis of optical communication systems with PPM signaling and APD receivers[J]. IEEE Trans Commun, 1988, 36(11):1185-1191.
[14] Kiasaleh K. Performance of APD-based, PPM free-space optical communication systems in atmospheric turbulence[J]. IEEE Trans Commun, 2005, 53(9):1455-1461.
[15] Muhammad S S, Gappmair W, Leitgeb E. PPM channel capacity evaluation for terrestrial FSO links[J]. Opt Exp, 2006, 15(16):10075-10085.