[1] John L J, Declan C H, Karim P W, et al. Vision-based navigation for rendezvous, docking and proximity operations [D]. Cranfield: American Astronomioal Society, 1999.
[2]
[3]
[4] Beard R W, Lawton J, and Hadaegh F Y. A coordination architecture for formation control [J]. IEEE Transactions on Control System Technology, 2001, 9(6): 777-790.
[5]
[6] Philip N K, Ananthasayanam M R. Relative position and attitude estimation and control schemes for the final phase of an autonomous docing mission of spacecraft[J]. Acta Astronautica, 2003, 52: 511-522.
[7]
[8] Lin Laixing, Li Can. CCD camera-based measurement for the final phase of RVD mission[J]. Journal of Astronautics, 1994, 15(2): 24-34. (in Chinese) 林来兴, 李灿. 交会对接最后逼近阶段CCD相机的测量方法[J]. 宇航学报, 1994, 15(2): 24-34.
[9] Du Xiaoping, Zhao Jiguang, Cui Zhanzhong, et al. Optical method for position-attitude determination between spacecrafts based on computer vision[J]. Optical Technique, 2003, 29(6): 664-666. (in Chinese) 杜小平, 赵继广, 崔占忠, 等. 基于计算机视觉的航天器间相对状态测量系统[J]. 光学技术, 2003, 29(6): 664-666.
[10]
[11] Zhang Qingjun, Hu Xiulin, Ye Bin, et al. Binocular vision based relative position and attitude determination between spacecrafts[J]. Journal of Astronautics, 2008, 29(1): 156-161. (in Chinese) 张庆君, 胡修林, 叶斌, 等. 基于双目视觉测量的航天器相对位置和姿态的测量方法[J]. 宇航学报, 2008, 29(1): 156-161.
[12]
[13] Mukundan R, Ramakrishnan K R. A quaternion solution to the pose determination problem for rendezvous and docking simulations[J]. Mathematics and Computers in Simulation, 1995, 39: 143-153.
[14]
[15]
[16] Zhang Shijie, Cao Xibin, Li Hui. Closed-form method for relative attitude and position parameters of RVD spacecrafts based monocular vision[J]. Optical Technique, 2005, 31(1): 6-10. (in Chinese) 张世杰, 曹喜滨, 李晖. 交会对接航天器间相对位姿参数单目视觉测量的解析算法[J]. 光学技术, 2005, 31(1): 6-10.
[17]
[18] Li Jianfeng, Du Xiaoping, Zhang Huixing. The research on spacecraft relative state optical measurement based on quaternion[J]. Aerospace Control, 2011, 29(2): 46-51. (in Chinese) 李建锋, 杜小平, 张彗星. 基于四元数的航天器间相对姿态光学测量方法研究[J]. 航天控制, 2011, 29(2): 46-51.
[19]
[20] Xu Wenfu, Liang Bin, Li Cheng, et al. The approach and simulation study of the relative pose measurement between space-crafts based on stereo vision[J]. Journal of Astronautics, 2009, 30(4): 1421-1428. (in Chinese) 徐文福, 梁斌, 李成, 等. 基于立体视觉的航天器相对位姿测量方法与仿真研究[J]. 宇航学报, 2009, 30(4): 1421-1428.
[21] Wang Baofeng, Li Guangyun, Chen Jihua, et al. Two methods of coded targets used in rendezvous and docking[J]. Journal of Astronautics, 2008, 29(1): 162-166. (in Chinese) 王保丰, 李广云, 陈继华, 等. 航天器交会对接中测量靶标的两种设计方法[J]. 宇航学报, 2008, 29(1): 162-166.
[22]
[23]
[24] Wilson J R. Satellite hopes ride on orbital express [J]. Aerospace America, 2007, 45(2): 30-35.
[25] Tafazoli M. A study of on-orbit spacecraft failures [J]. Acta Astronautica, 2009, 64(2/3): 195-205.
[26]
[27] Xu Wenfu, Liang Bin, Li Cheng, et al. Measurement and planning approach of space robot for capturing non-cooperative target[J]. Robot, 2010, 32(1): 61-69. (in Chinese) 徐文福, 梁斌, 李成, 等. 空间机器人捕获非合作目标的测量与规划方法[J]. 机器人, 2010, 32(1): 61-69.
[28]
[29]
[30] Feng Chun, Wu Hongtao, Chen Bai, et al. Closed-form method for relative pose parameters between chaser and target spacecraft based on quaternion[J]. China Mechanical Engineering, 2013, 24(12): 1655-1660. (in Chinese) 冯春, 吴洪涛, 陈柏, 等. 追踪与目标航天器相对位姿参数四元数的解析算法[J]. 中国机械工程, 2013, 24(12): 1655-1660.
[31] Chao Zhichao, Fu Sihua, Jiang Guangwen, et al. Mono camera and laser rangefinding sensor position-pose measurement system[J]. Acta Optica Sinica, 2011, 31(3): 0312001. (in Chinese) 晁志超, 伏思华, 姜广文, 等. 单目摄像机-激光测距传感器位姿测量系统[J]. 光学学报, 2011, 31(3): 0312001.