3D Fully Polarimetric Attributed Scattering Center Extraction Based on Sequential 2D SAR Images

Compared with the two-dimensional (2D) attributed scattering center model (ASCM), three dimensional (3D) fully polarimetric attributed scattering center model (FP-ASCM) is able to directly offer the target location, size, and orientation in 3D space, which plays an important role in noncooperative t...

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Main Authors: Yue Zhao, Bo Jiu, Lei Zhang, Hongwei Liu, Zhenfang Li
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8703714/
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spelling doaj-80d7eeb72f5a4762bdbec349a3948aac2021-03-29T22:54:08ZengIEEEIEEE Access2169-35362019-01-017585705858310.1109/ACCESS.2019.291434587037143D Fully Polarimetric Attributed Scattering Center Extraction Based on Sequential 2D SAR ImagesYue Zhao0Bo Jiu1https://orcid.org/0000-0001-5064-5702Lei Zhang2https://orcid.org/0000-0001-5797-5480Hongwei Liu3Zhenfang Li4National Laboratory of Radar Signal Processing, Xidian University, Xian, ChinaNational Laboratory of Radar Signal Processing, Xidian University, Xian, ChinaNational Laboratory of Radar Signal Processing, Xidian University, Xian, ChinaNational Laboratory of Radar Signal Processing, Xidian University, Xian, ChinaNational Laboratory of Radar Signal Processing, Xidian University, Xian, ChinaCompared with the two-dimensional (2D) attributed scattering center model (ASCM), three dimensional (3D) fully polarimetric attributed scattering center model (FP-ASCM) is able to directly offer the target location, size, and orientation in 3D space, which plays an important role in noncooperative target recognition. Considering that 3D images of the target are hard to obtain, 3D fully polarimetric attributed scattering center feature extraction from sequential 2D SAR images is addressed, and a novel method is proposed based on sparse representation in a frequency-azimuth-elevation domain. The proposed method consists of two steps: scattering center associations from sequential images and 3D FP-ASCM parameter estimation. First, a new scattering center association method is proposed by using epipolar geometry and polarization characteristics. In this method, scattering centers from different images can be associated by minimizing their projection distance and polarimetric diversity. Second, 3D fully polarimetric attributed scattering center feature is extracted based on sparse representation in a frequency-azimuth-elevation domain. As 3D FP-ASCM includes eight target parameters and three radar parameters, the dimension of the parameterized dictionary is very large. Thus, parameter initialization and range-orientation uncoupling are adopted to reduce the dimension of the parameterized dictionary. The numerical results for electromagnetic computation data and measurement data show the efficiency of the proposed method.https://ieeexplore.ieee.org/document/8703714/Attributed scattering centerSAR imagesparse representationscattering center associationrange-orientation uncoupling
collection DOAJ
language English
format Article
sources DOAJ
author Yue Zhao
Bo Jiu
Lei Zhang
Hongwei Liu
Zhenfang Li
spellingShingle Yue Zhao
Bo Jiu
Lei Zhang
Hongwei Liu
Zhenfang Li
3D Fully Polarimetric Attributed Scattering Center Extraction Based on Sequential 2D SAR Images
IEEE Access
Attributed scattering center
SAR image
sparse representation
scattering center association
range-orientation uncoupling
author_facet Yue Zhao
Bo Jiu
Lei Zhang
Hongwei Liu
Zhenfang Li
author_sort Yue Zhao
title 3D Fully Polarimetric Attributed Scattering Center Extraction Based on Sequential 2D SAR Images
title_short 3D Fully Polarimetric Attributed Scattering Center Extraction Based on Sequential 2D SAR Images
title_full 3D Fully Polarimetric Attributed Scattering Center Extraction Based on Sequential 2D SAR Images
title_fullStr 3D Fully Polarimetric Attributed Scattering Center Extraction Based on Sequential 2D SAR Images
title_full_unstemmed 3D Fully Polarimetric Attributed Scattering Center Extraction Based on Sequential 2D SAR Images
title_sort 3d fully polarimetric attributed scattering center extraction based on sequential 2d sar images
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description Compared with the two-dimensional (2D) attributed scattering center model (ASCM), three dimensional (3D) fully polarimetric attributed scattering center model (FP-ASCM) is able to directly offer the target location, size, and orientation in 3D space, which plays an important role in noncooperative target recognition. Considering that 3D images of the target are hard to obtain, 3D fully polarimetric attributed scattering center feature extraction from sequential 2D SAR images is addressed, and a novel method is proposed based on sparse representation in a frequency-azimuth-elevation domain. The proposed method consists of two steps: scattering center associations from sequential images and 3D FP-ASCM parameter estimation. First, a new scattering center association method is proposed by using epipolar geometry and polarization characteristics. In this method, scattering centers from different images can be associated by minimizing their projection distance and polarimetric diversity. Second, 3D fully polarimetric attributed scattering center feature is extracted based on sparse representation in a frequency-azimuth-elevation domain. As 3D FP-ASCM includes eight target parameters and three radar parameters, the dimension of the parameterized dictionary is very large. Thus, parameter initialization and range-orientation uncoupling are adopted to reduce the dimension of the parameterized dictionary. The numerical results for electromagnetic computation data and measurement data show the efficiency of the proposed method.
topic Attributed scattering center
SAR image
sparse representation
scattering center association
range-orientation uncoupling
url https://ieeexplore.ieee.org/document/8703714/
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