JOURNAL OF RADARS
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JOURNAL OF RADARS  2018, Vol. 7 Issue (3): 320-334    DOI: 10.12000/JR18019
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Three-dimensional Geometry Reconstruction of Ship Targets with Complex Motion for Interferometric ISAR with Sparse Aperture(in English)
Wang Yong*  Chen Xuefei
(Research Institute of Electronic Engineering Technology, Harbin Institute of Technology, Harbin 150001, China)
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Abstract Three-Dimensional (3-D) Interferometric Inverse Synthetic Aperture Radar (InISAR) imaging system based on the orthogonal double baseline can achieve the 3-D geometric reconstruction of a target effectively, which is extremely helpful in target classification and identification. However, only sparse aperture measurements are available in the actual imaging process, which might pose some challenges to the traditional InISAR imaging algorithms. In this study, a new method of 3-D InISAR imaging of a ship with sparse aperture is presented. Minimum entropy algorithms are adopted to realize motion compensation and image coregistration of the sparse echoes. A gradient-based technique is used to achieve highly accurate signal reconstruction for the sparse aperture. A two-Dimensional (2-D) ISAR image was achieved with azimuth compression via the parameters-estimation method, and the 3-D reconstruction of a ship was achieved via the interference approach. The obtained simulation results validate the feasibility of the presented approach.
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Wang Yong
Chen Xuefei
Key wordsThree-Dimensional (3-D) Interferometric Inverse Synthetic Aperture Radar (InISAR)   Sparse aperture   Gradient-based method   Parameter estimation     
Received: 2018-03-02; Published: 2018-06-11
Fund: The National Natural Science Foundation of China (61622107, 61471149), The Fundamental Research Funds for the Central Universities.
Cite this article:   
Wang Yong,Chen Xuefei. Three-dimensional Geometry Reconstruction of Ship Targets with Complex Motion for Interferometric ISAR with Sparse Aperture(in English)[J]. JOURNAL OF RADARS, 2018, 7(3): 320-334.
 
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