High-Resolution ISAR Imaging with Modified Joint Range Spatial-Variant Autofocus and Azimuth Scaling

Well-focused and accurately scaled high-resolution inverse synthetic aperture radar (ISAR) images provide a sound basis for feature extraction and target recognition. This paper proposes a novel high-resolution ISAR imaging algorithm, namely modified joint range spatial-variant autofocus and azimuth...

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Main Authors: Jiaqi Wei, Shuai Shao, Hui Ma, Penghui Wang, Lei Zhang, Hongwei Liu
Format: Article
Language:English
Published: MDPI AG 2020-09-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/20/18/5047
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spelling doaj-5a6c82f20ade4c8eb3e77b8f15882ef32020-11-25T02:55:06ZengMDPI AGSensors1424-82202020-09-01205047504710.3390/s20185047High-Resolution ISAR Imaging with Modified Joint Range Spatial-Variant Autofocus and Azimuth ScalingJiaqi Wei0Shuai Shao1Hui Ma2Penghui Wang3Lei Zhang4Hongwei Liu5National Lab of Radar Signal Processing, Xidian University, Xi’an 710071, ChinaNational Lab of Radar Signal Processing, Xidian University, Xi’an 710071, ChinaNational Lab of Radar Signal Processing, Xidian University, Xi’an 710071, ChinaNational Lab of Radar Signal Processing, Xidian University, Xi’an 710071, ChinaSchool of Electronics and Communication Engineering, Sun Yat-Sen University, Guangzhou 510275, ChinaNational Lab of Radar Signal Processing, Xidian University, Xi’an 710071, ChinaWell-focused and accurately scaled high-resolution inverse synthetic aperture radar (ISAR) images provide a sound basis for feature extraction and target recognition. This paper proposes a novel high-resolution ISAR imaging algorithm, namely modified joint range spatial-variant autofocus and azimuth scaling algorithm (MJAAS). After motion compensation, the shift of the equivalent rotational center (ERC) of the target destroys the linear relationship between the azimuth chirp rates (ACR) of echo signals and the range coordinates of scattering points, thereby leading to the failure of azimuth scaling. Accordingly, a new joint equivalent rotational center position and effective rotational velocity (JERCP-ERV) signal model is established, serving as the basis of MJAAS. By recourse to the Davidon-Fletcher-Powell (DFP) algorithm, MJAAS can jointly estimate the ERCP and ERV by solving a minimum entropy optimization problem, so as to simultaneously achieve accurate azimuth scaling and range spatial-variant autofocus, which further improves the image focusing performance. MJAAS is not restricted by the modes of motion errors (coherent or non-coherent) and the motion compensation methods, so it can be widely applied to real data with the advantages of strong practicality and high accuracy. Extensive experimental results based on both simulated and real data are provided to corroborate the effectiveness of the proposed algorithm.https://www.mdpi.com/1424-8220/20/18/5047inverse synthetic aperture radar (ISAR)autofocusazimuth scalingequivalent rotational center (ERC)minimum entropy optimization lower case
collection DOAJ
language English
format Article
sources DOAJ
author Jiaqi Wei
Shuai Shao
Hui Ma
Penghui Wang
Lei Zhang
Hongwei Liu
spellingShingle Jiaqi Wei
Shuai Shao
Hui Ma
Penghui Wang
Lei Zhang
Hongwei Liu
High-Resolution ISAR Imaging with Modified Joint Range Spatial-Variant Autofocus and Azimuth Scaling
Sensors
inverse synthetic aperture radar (ISAR)
autofocus
azimuth scaling
equivalent rotational center (ERC)
minimum entropy optimization lower case
author_facet Jiaqi Wei
Shuai Shao
Hui Ma
Penghui Wang
Lei Zhang
Hongwei Liu
author_sort Jiaqi Wei
title High-Resolution ISAR Imaging with Modified Joint Range Spatial-Variant Autofocus and Azimuth Scaling
title_short High-Resolution ISAR Imaging with Modified Joint Range Spatial-Variant Autofocus and Azimuth Scaling
title_full High-Resolution ISAR Imaging with Modified Joint Range Spatial-Variant Autofocus and Azimuth Scaling
title_fullStr High-Resolution ISAR Imaging with Modified Joint Range Spatial-Variant Autofocus and Azimuth Scaling
title_full_unstemmed High-Resolution ISAR Imaging with Modified Joint Range Spatial-Variant Autofocus and Azimuth Scaling
title_sort high-resolution isar imaging with modified joint range spatial-variant autofocus and azimuth scaling
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-09-01
description Well-focused and accurately scaled high-resolution inverse synthetic aperture radar (ISAR) images provide a sound basis for feature extraction and target recognition. This paper proposes a novel high-resolution ISAR imaging algorithm, namely modified joint range spatial-variant autofocus and azimuth scaling algorithm (MJAAS). After motion compensation, the shift of the equivalent rotational center (ERC) of the target destroys the linear relationship between the azimuth chirp rates (ACR) of echo signals and the range coordinates of scattering points, thereby leading to the failure of azimuth scaling. Accordingly, a new joint equivalent rotational center position and effective rotational velocity (JERCP-ERV) signal model is established, serving as the basis of MJAAS. By recourse to the Davidon-Fletcher-Powell (DFP) algorithm, MJAAS can jointly estimate the ERCP and ERV by solving a minimum entropy optimization problem, so as to simultaneously achieve accurate azimuth scaling and range spatial-variant autofocus, which further improves the image focusing performance. MJAAS is not restricted by the modes of motion errors (coherent or non-coherent) and the motion compensation methods, so it can be widely applied to real data with the advantages of strong practicality and high accuracy. Extensive experimental results based on both simulated and real data are provided to corroborate the effectiveness of the proposed algorithm.
topic inverse synthetic aperture radar (ISAR)
autofocus
azimuth scaling
equivalent rotational center (ERC)
minimum entropy optimization lower case
url https://www.mdpi.com/1424-8220/20/18/5047
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