Optics and Precision Engineering, Volume. 21, Issue 6, 1635(2013)
Attitude measurement of space objects based on multi-linear CCD and multi-point cooperation target
[1] [1] SHANG Y. Researches on vision-based pose measurements for space targets[D]. Changsha: National University of Defense Technology, 2006:2-4,79-80. (in Chinese)
[3] [3] HEIDARIAN M, MEMON A Y. Attitude control of VTOL-UAVS[C]. Internation Conference on Control,2012:363-368.
[4] [4] YIN H T,LIU CH,LI Y B. Analysis of factors on the error of the camera calibration[J]. Information & Communications, 2012 (1): 28-30. (in Chinese)
[5] [5] RAMAKRISHNAN, PRABADARAN,EKAMBARAVANAN,et al.. Function approximation using feedforward networks with sigmoidal signals [J]. Information Journal of Soft Computing,2006,1(1):76-82.
[6] [6] LIN L X. Development of space rendezvous and docking technology in past 40 years[J]. Space Craft Engineering, 2007,16(4):70-77.
[7] [7] WAHAB M N A, SIVADEV N, SUNDARAJ K. Target distance estimation using momocular vision system for mobile robot [C]. IEEE Conference on Open Systems, 2011:11-15.
[8] [8] ZHANG X L, ZHANG B F, LIN Y CH. Study on dynamic object attitude based on a binocular stereo vision system with orthogonal optical axes[J]. Journal of Optoelectronics·Laser,2010, 21(11):1693-1697.(in Chinese)
[9] [9] JIANG SH SH, LEI ZH Y. On the measure of the flying shell with line scan CCD [J]. Journal of Xi’an Institute of Technology. 2002, 14(3):23-25.(in Chinese)
[10] [10] LI J K,CHEN L Y. A slit photography system based on linear CCD[J]. Laser & Infrared, 2009,39(3):300-303.
[11] [11] AI L L. Study of the key technologies of the exterior attitude measurement for spatial object based on linear CCD [D]. Harbin: Harbin Institute of Technology, 2009:41-50. (in Chinese)
[12] [12] ABDEL-AZIZ Y I, KARARA H M. Direct linear transformation into object space coordinates in close-range photogrammetry [C]. Proc Symp Close-Range Photogrammetry, 1971:1-18.
[13] [13] Camera Calibration of Attitude measurement system based on BP neura network[J]. Journal of optoelectronics laser, 2007,18(7):832-834.(in Chinese)
[14] [14] KOLMOGOROV A N. On the representation of continuous functions of many variables by superposition of continuous functions of one variable and addition [J]. Dokl. Akad. Nauk.,1957(114): 953-956.
[15] [15] RAMAKRISHNAN, PRABADARAN, EKAMB-ARAVANAN,et al.. Function approximation using feedforward networks with sigmoidal signals [J]. Information Journal of Soft Computing, 2006,1(1):76-82.
[16] [16] ZHANG W J. Function approximation and documentation of sampling data using artificial neural networks [J]. Environmental Moniroring and Assessment,2006(122): 185-201.
[17] [17] LI J, YUAN F, DING ZH L. Linear CCD camera calibration of exterior attitude measurement system based on BP neural network [J]. Chinese Journal of Scientific Instrument, 2010, 31(5):1138-1141.(in Chinese)
[18] [18] ZHOU J H, MIAO Y H, WANG M H. Attitude representation using Rodrigues parameter [J]. Journal of Astronautics, 2004, 25(5):514-519. (in Chinese)
[19] [19] SHUSTER M D. A survey of attitude representations [J]. Journal of the Astronautical Sciences, 1993,41(4):439-517.
Get Citation
Copy Citation Text
LI Jing, YUAN Feng, HU Ying-hui. Attitude measurement of space objects based on multi-linear CCD and multi-point cooperation target[J]. Optics and Precision Engineering, 2013, 21(6): 1635
Category:
Received: Jan. 28, 2013
Accepted: --
Published Online: Jul. 1, 2013
The Author Email: Jing LI (hitlijing@163.com)