Airborne Downward Looking Sparse Linear Array 3-D SAR Heterogeneous Parallel Simulation

The airborne downward looking sparse linear array three dimensional synthetic aperture radar (DLSLA 3-D SAR) operates nadir observation with the along-track synthetic aperture formulated by platform movement and the cross-track synthetic aperture formulated by physical sparse linear array. Consideri...

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Main Authors: Yirong Wu, Weixian Tan, Xueming Peng, Wen Hong, Yanping Wang
Format: Article
Language:English
Published: MDPI AG 2013-10-01
Series:Remote Sensing
Subjects:
Online Access:http://www.mdpi.com/2072-4292/5/10/5304
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spelling doaj-ffdd501d1ae647489ae66107439b769a2020-11-24T23:32:30ZengMDPI AGRemote Sensing2072-42922013-10-015105304532910.3390/rs5105304Airborne Downward Looking Sparse Linear Array 3-D SAR Heterogeneous Parallel SimulationYirong WuWeixian TanXueming PengWen HongYanping WangThe airborne downward looking sparse linear array three dimensional synthetic aperture radar (DLSLA 3-D SAR) operates nadir observation with the along-track synthetic aperture formulated by platform movement and the cross-track synthetic aperture formulated by physical sparse linear array. Considering the lack of DLSLA 3-D SAR data in the current preliminary study stage, it is very important and essential to develop DLSLA 3-D SAR simulation (echo generation simulation and image reconstruction simulation, including point targets simulation and 3-D distributed scene simulation). In this paper, DLSLA 3-D SAR imaging geometry, the echo signal model and the heterogeneous parallel technique are discussed first. Then, heterogeneous parallel echo generation simulation with time domain correlation and the frequency domain correlation method is described. In the following, heterogeneous parallel image reconstruction simulation with two imaging algorithms, e.g., 3-D polar format algorithm, polar formatting and L1 regularization algorithm is discussed. Finally, the point targets and the 3-D distributed scene simulation are demonstrated to validate the effectiveness and performance of our proposed heterogeneous parallel simulation technique. The 3-D distributed scene employs airborne X-band DEM and P-band Circular SAR image of the same area as simulation scene input.http://www.mdpi.com/2072-4292/5/10/5304airborne downward looking sparse linear array 3-D SARheterogeneous parallelecho generationtime domain correlationfrequency domain correlationimage reconstructionpolar formattingL1 regularization
collection DOAJ
language English
format Article
sources DOAJ
author Yirong Wu
Weixian Tan
Xueming Peng
Wen Hong
Yanping Wang
spellingShingle Yirong Wu
Weixian Tan
Xueming Peng
Wen Hong
Yanping Wang
Airborne Downward Looking Sparse Linear Array 3-D SAR Heterogeneous Parallel Simulation
Remote Sensing
airborne downward looking sparse linear array 3-D SAR
heterogeneous parallel
echo generation
time domain correlation
frequency domain correlation
image reconstruction
polar formatting
L1 regularization
author_facet Yirong Wu
Weixian Tan
Xueming Peng
Wen Hong
Yanping Wang
author_sort Yirong Wu
title Airborne Downward Looking Sparse Linear Array 3-D SAR Heterogeneous Parallel Simulation
title_short Airborne Downward Looking Sparse Linear Array 3-D SAR Heterogeneous Parallel Simulation
title_full Airborne Downward Looking Sparse Linear Array 3-D SAR Heterogeneous Parallel Simulation
title_fullStr Airborne Downward Looking Sparse Linear Array 3-D SAR Heterogeneous Parallel Simulation
title_full_unstemmed Airborne Downward Looking Sparse Linear Array 3-D SAR Heterogeneous Parallel Simulation
title_sort airborne downward looking sparse linear array 3-d sar heterogeneous parallel simulation
publisher MDPI AG
series Remote Sensing
issn 2072-4292
publishDate 2013-10-01
description The airborne downward looking sparse linear array three dimensional synthetic aperture radar (DLSLA 3-D SAR) operates nadir observation with the along-track synthetic aperture formulated by platform movement and the cross-track synthetic aperture formulated by physical sparse linear array. Considering the lack of DLSLA 3-D SAR data in the current preliminary study stage, it is very important and essential to develop DLSLA 3-D SAR simulation (echo generation simulation and image reconstruction simulation, including point targets simulation and 3-D distributed scene simulation). In this paper, DLSLA 3-D SAR imaging geometry, the echo signal model and the heterogeneous parallel technique are discussed first. Then, heterogeneous parallel echo generation simulation with time domain correlation and the frequency domain correlation method is described. In the following, heterogeneous parallel image reconstruction simulation with two imaging algorithms, e.g., 3-D polar format algorithm, polar formatting and L1 regularization algorithm is discussed. Finally, the point targets and the 3-D distributed scene simulation are demonstrated to validate the effectiveness and performance of our proposed heterogeneous parallel simulation technique. The 3-D distributed scene employs airborne X-band DEM and P-band Circular SAR image of the same area as simulation scene input.
topic airborne downward looking sparse linear array 3-D SAR
heterogeneous parallel
echo generation
time domain correlation
frequency domain correlation
image reconstruction
polar formatting
L1 regularization
url http://www.mdpi.com/2072-4292/5/10/5304
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AT xuemingpeng airbornedownwardlookingsparselineararray3dsarheterogeneousparallelsimulation
AT wenhong airbornedownwardlookingsparselineararray3dsarheterogeneousparallelsimulation
AT yanpingwang airbornedownwardlookingsparselineararray3dsarheterogeneousparallelsimulation
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