[1] ANDREW E J, JAMES F M. Overview of terrain relative navigation approaches for precise lunar landing[C]. 2008 IEEE Aerospace Conference,2008: 1-10.
[2] ANDREW E J, ADNAN A, LARRY H M. A general approach to terrain relative navigation for planetary landing[C]. Proceedings of the AIAA Infotech@Aerospace Conference, AIAA 2007-2854.
[3] ELIASON E, ISBELL C, LEE E, et al.. The clementine UVVIS global lunar mosaic[R].1999.
[4] ARCHINAL B A, ROSIEK M R, KIRK R L, et al.. Completion of the unified lunar control network 2005 and topographic model[C]. 37th Lunar and Planetary Science Conference. Houston: 2006: 2310.
[5] LI C L, LIU J J, REN X,et al.. The global image of the moon by the Chang’E-1: data processing and lunar cartography[J]. Sci China Earth Sci, 2010,40(3): 294-306. (in Chinese)
[6] LI X J,WANG X B,XIE J W,et al.. Design and implementation of software for automatic producing selenograph from images taken by CE-1 satellite[J].Journal of the Academy of Equipment Command & Technology, 2009,20(1): 85-90.(in Chinese)
[7] http: //www.cic.gov.cn[OL].
[8] LIU L, WANG X. An Orbital Dynamics of Lunar Probe[M]. Bejing: National Defense Industry Press, 2006.(in Chinese)
[9] CATHERINE L T, JAMES S B. Radiometric Tracking Techniques for Deep Space Navigation[M]. New Jersey: John Wiley&Sons,Inc.,2003.
[10] CHEN M, TANG G S, CAO J F, et al..Precision orbit determination of CE-1 lunar satellite[J].Geomatics and Information Science of Wuhan University,2011,36(2): 212-217.(in Chinese)
[11] STUDHOLME C, HILL D L G, HAWKES D J. An overlap invariant entropy measure of 3D medical image alignment[J]. Pattern Recognition, 1999,32(1): 71-86.