A Novel MIMO–SAR Solution Based on Azimuth Phase Coding Waveforms and Digital Beamforming
In multiple-input multiple-output synthetic aperture radar (MIMO–SAR) signal processing, a reliable separation of multiple transmitted waveforms is one of the most important and challenging issues, for the unseparated signal will degrade the performance of most MIMO–SAR applicati...
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doaj-8b100b6061f7481f9e5281d74e167d322020-11-25T01:17:18ZengMDPI AGSensors1424-82202018-10-011810337410.3390/s18103374s18103374A Novel MIMO–SAR Solution Based on Azimuth Phase Coding Waveforms and Digital BeamformingFang Zhou0Jiaqiu Ai1Zhangyu Dong2Jiajia Zhang3Mengdao Xing4School of Computer and Information, Hefei University of Technology, Hefei 230009, ChinaSchool of Computer and Information, Hefei University of Technology, Hefei 230009, ChinaSchool of Computer and Information, Hefei University of Technology, Hefei 230009, ChinaEast China Research Institute of Electronic Engineering, Hefei 230088, ChinaInstitute of Electronic Engineering, Xidian University, Xi’an 710071, ChinaIn multiple-input multiple-output synthetic aperture radar (MIMO–SAR) signal processing, a reliable separation of multiple transmitted waveforms is one of the most important and challenging issues, for the unseparated signal will degrade the performance of most MIMO–SAR applications. As a solution to this problem, a novel APC–MIMO–SAR system is proposed based on the azimuth phase coding (APC) technique to transmit multiple waveforms simultaneously. Although the echo aliasing occurs in the time domain and Doppler domain, the echoes can be separated well without performance degradation by implementing the azimuth digital beamforming (DBF) technique, comparing to the performance of the orthogonal waveforms. The proposed MIMO–SAR solution based on the APC waveforms indicates the feasibility and the spatial diversity of the MIMO–SAR system. It forms a longer baseline in elevation, which gives the potential to expand the application of MIMO–SAR in elevation, such as improving the performance of multibaseline InSAR and three-dimensional SAR imaging. Simulated results on both a point target and distributed targets validate the effectiveness of the echo separation and reconstruction method with the azimuth DBF. The feasibility and advantage of the proposed MIMO–SAR solution based on the APC waveforms are demonstrated by comparing with the imaging result of the up- and down-chirp waveforms.http://www.mdpi.com/1424-8220/18/10/3374multiple-input multiple-output synthetic aperture radar (MIMO–SAR)radar systemdigital beamforming (DBF)azimuth phase coding (APC)orthogonal waveforms |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Fang Zhou Jiaqiu Ai Zhangyu Dong Jiajia Zhang Mengdao Xing |
spellingShingle |
Fang Zhou Jiaqiu Ai Zhangyu Dong Jiajia Zhang Mengdao Xing A Novel MIMO–SAR Solution Based on Azimuth Phase Coding Waveforms and Digital Beamforming Sensors multiple-input multiple-output synthetic aperture radar (MIMO–SAR) radar system digital beamforming (DBF) azimuth phase coding (APC) orthogonal waveforms |
author_facet |
Fang Zhou Jiaqiu Ai Zhangyu Dong Jiajia Zhang Mengdao Xing |
author_sort |
Fang Zhou |
title |
A Novel MIMO–SAR Solution Based on Azimuth Phase Coding Waveforms and Digital Beamforming |
title_short |
A Novel MIMO–SAR Solution Based on Azimuth Phase Coding Waveforms and Digital Beamforming |
title_full |
A Novel MIMO–SAR Solution Based on Azimuth Phase Coding Waveforms and Digital Beamforming |
title_fullStr |
A Novel MIMO–SAR Solution Based on Azimuth Phase Coding Waveforms and Digital Beamforming |
title_full_unstemmed |
A Novel MIMO–SAR Solution Based on Azimuth Phase Coding Waveforms and Digital Beamforming |
title_sort |
novel mimo–sar solution based on azimuth phase coding waveforms and digital beamforming |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2018-10-01 |
description |
In multiple-input multiple-output synthetic aperture radar (MIMO–SAR) signal processing, a reliable separation of multiple transmitted waveforms is one of the most important and challenging issues, for the unseparated signal will degrade the performance of most MIMO–SAR applications. As a solution to this problem, a novel APC–MIMO–SAR system is proposed based on the azimuth phase coding (APC) technique to transmit multiple waveforms simultaneously. Although the echo aliasing occurs in the time domain and Doppler domain, the echoes can be separated well without performance degradation by implementing the azimuth digital beamforming (DBF) technique, comparing to the performance of the orthogonal waveforms. The proposed MIMO–SAR solution based on the APC waveforms indicates the feasibility and the spatial diversity of the MIMO–SAR system. It forms a longer baseline in elevation, which gives the potential to expand the application of MIMO–SAR in elevation, such as improving the performance of multibaseline InSAR and three-dimensional SAR imaging. Simulated results on both a point target and distributed targets validate the effectiveness of the echo separation and reconstruction method with the azimuth DBF. The feasibility and advantage of the proposed MIMO–SAR solution based on the APC waveforms are demonstrated by comparing with the imaging result of the up- and down-chirp waveforms. |
topic |
multiple-input multiple-output synthetic aperture radar (MIMO–SAR) radar system digital beamforming (DBF) azimuth phase coding (APC) orthogonal waveforms |
url |
http://www.mdpi.com/1424-8220/18/10/3374 |
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