[1] Li C, Xia M L, Mu Q Q, et al. High-precision open-loop adaptive optics system based on LC-SLM[J]. Optics Express, 2009, 17(13):10774-10781.
[2] Portillo A A, Ortiz G G, Racho C. Fine pointingcontrol for optical communications[J]. 2001 IEEE Aerospace Conference Proceedings, 2001, 3:1541-1550.
[3] Cao Z L, Mu Q Q, Hu L F, et al. Preliminary use of nematic liquid crystal adaptive optics with a 2.16-meter reflecting telescope[J]. Optics Express, 2009, 17(4):2530-2537.
[4] Cao Z L, Mu Q Q, Hu L F, et al. Optimal energy-splitting method for an open-loop liquid crystal adaptive optics system[J]. Optics Express, 2012, 20(17):19331-19342.
[5] Tan Fengfu, Chen Xiutao, Yao Baidong, et al. Tilt correction system for laser atmospheric propagation[J]. Infrared and Laser Engineering, 2011, 40(3):429-432. (in Chinese)谭逢富, 陈修涛, 姚佰栋, 等. 激光大气传输倾斜校正系统[J]. 红外与激光工程, 2011, 40(3):429-432.
[6] Sweeney M, Rynkowski G, Ketabchi M, et al. Design considerations for fast steering mirrors(FSMs)[J]. Optical Scanning, 2002, 4773(1):63-73.
[7] Zhang Xiaojun, Ling Ning. Dynamic analysis of fast piezo steering mirror[J]. High Power Laser Particle Beams, 2003, 15(10):966-968. (in Chinese)张小军, 凌宁. 高速压电倾斜镜动态特性分析[J]. 强激光与粒子束, 2003, 15(10):966-968.
[8] Liu Min. Research of model and control for fast-steering mirrors[J]. Optical Technique, 2008, 34(2):227-229. (in Chinese)刘敏. 快速倾斜镜的模糊PID自适应控制器设计[J]. 光学技术, 2008, 34(2):227-229.
[9] Van O P, De M B. Subspace Identification for Linear System:Theory Implementation Applications[M]. London:Kluwer Academic Publishers, 1996.
[10] Song H, Fraanje R, Schitter G, et al. Controller design for a high-sampling-rate closed-loop adaptive optics system with piezo-driven deformable mirror[J]. European Journal of Control, 2011, 17(3):290-301.