Citation: | XU Fei-fei, LIU Sha, YIN Ming-dong, JI Ming. Performance comparison and analysis of coarse and fine combinedstabilization control system based on mirror compensation[J]. Journal of Applied Optics, 2013, 34(1): 15-20. |
[1]徐飞飞,纪明,谢静,等.FSM在高精度瞄准线稳定系统中的应用研究[J].应用光学, 2012,33(1):9-13.
XU Fei-fei, JI-Ming, XIE Jing, et al. The application of FSM in the high accuracy line-of-sight stabilization system[J].Journal of Applied Optics,2012,33(1):9-13.(in Chinese with an English abstract) [2]胡寿松.自动控制原理[M].北京:科学出版社,2001. HU Shou-song.Automatic control principle[M].Beijing:Science Press, 2001.(in Chinese) [3]HILKERT J M,COHEN S.Development of mirror stabilization line of sight rate equations for an un-conventional sensor-to-gimbal orientation[J]. SPIE, 2009,7338:doi:10.1117/12.818805. [4]王毅,高伟志,王贵文,等.光电精密跟踪的双重复合轴伺服系统[J].光学精密工程,1996,4(4):58--61. WANG Yi,GAO Wei-zhi,WANG Gui-wen,et al. Dual compound axis servo system of opto-electronic precision tracking[J].Optics and Precision Engineering,1996,4(4):58-61.(in Chinese with an English abstract) [5]KWAK H K, CHOI Y J, YU K H, et al. Dual stage and digital image based method for sight stabilization[J].IEEE, 978-1-4244-16660/08:1114-1119. [6]CHOI Y J, KANG M S. Dual stage servo controller for image tracking system[J].Journal of the Korean Society of Precision Engineering, 2007, 24(2):86-94. [7]纪明.多频谱光电综合系统高精度稳定技术研究[J].应用光学,1996,17(3):55-60. JI Ming.Research on high accuracy stabilization technology for integrated multi-spectrum electro-optical system [J].Journal of Applied Optics,1996,17(3):55-60.(in Chinese with an English abstract) [8]GERMANN L M. Specification of fine steering mirrors for line-of-sight stabilization sytems[J]. SPIE, 1991,1543:202-212. [9]GLAESE R M, ANDERSON E H, JANZEN P C. Active jitter suppression of optical structures[J]. SPIE, 2001,4327:591-599. [10]HILKER J M. Inertially stabilized platform technology[J]. IEEE Control systems Magazine, 2008,2: 26-46. |
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