• Opto-Electronic Engineering
  • Vol. 33, Issue 11, 1 (2006)
[in Chinese], [in Chinese], and [in Chinese]
Author Affiliations
  • [in Chinese]
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    DOI: Cite this Article
    [in Chinese], [in Chinese], [in Chinese]. Investigation of low signal-to-noise ratio beacon capture technique in space rendezvous and docking[J]. Opto-Electronic Engineering, 2006, 33(11): 1 Copy Citation Text show less
    References

    [2] Jae-Ho Choi,A.R.Sarah.Three-Dimensional Location Estimationof Trajectories of Point Targets Using a Projection-Based Transformation Method[J].Optical Engineering,1995,34(3):933-939.

    [3] I.S.Reed.Optical Moving Target Indication Algorithm for Optical Image Sequences[J].IEEE T-AES,1990,26(3):434-440.

    [4] Y.Barniv,O.Kella.Dynamic Programming Solution for Detecting Dim Moving Targets Part Ⅱ:Analysis[J].IEEE T-AES,1987,23(6):776-787.

    [5] S.D.Blostein,T.S.Huang.Detecting Small,Moving Objects in Image Sequences Using Sequential Hypothesis Testing[J].IEEE T-SP,1991,39(7):1611-1629.

    [6] S.L.Wang,X.S.Zheng.Detection of Moving Point Targets with Neural Networks[A].Proc.of IJCNN 1992[C].Beijing:INNS,IEEE NNC,and CNNC,1992.53-61.

    [7] J.F.Rivest,R.Fortin.Detection of Dim Targets in Digital Infrared Imagery by Morphological Image Processing[J].Optical Engineering,1996,35(7):1886-1893.

    [8] M.S.Dennis,I.E.Abdou,R.E.Warren.Optimum Detection of Small Targets in a Cluttered Background[J].Optical Engineering,1998,37(1):83-92.

    [11] N.C.Mohanty.Computer Tracking of Moving Point Targets in Space[J].IEEE T-PAMI,1981,5(3):606-611.

    [13] Ren-Jean Liou,R A Maimood.Dim Target Detection Using High Order Correlation Method[J].IEEE T-AES,1993,29(3).841-856.

    [14] P.L.Chu.Optimal Projection for Multidimensional Signal Detection[J].IEEE T-ASSP,1988,36(5):775-786.

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    [in Chinese], [in Chinese], [in Chinese]. Investigation of low signal-to-noise ratio beacon capture technique in space rendezvous and docking[J]. Opto-Electronic Engineering, 2006, 33(11): 1
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