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Microwave Staring Correlated Imaging Based on Unsteady Aerostat Platform

Microwave staring correlated imaging (MSCI), with the technical capability of high-resolution imaging on relatively stationary targets, is a promising approach for remote sensing. For the purpose of continuous observation of a fixed key area, a tethered floating aerostat is often used as the carryin...

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Autores principales: Jiang, Zheng, Guo, Yuanyue, Deng, Jie, Chen, Weidong, Wang, Dongjin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6630650/
https://www.ncbi.nlm.nih.gov/pubmed/31238598
http://dx.doi.org/10.3390/s19122825
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author Jiang, Zheng
Guo, Yuanyue
Deng, Jie
Chen, Weidong
Wang, Dongjin
author_facet Jiang, Zheng
Guo, Yuanyue
Deng, Jie
Chen, Weidong
Wang, Dongjin
author_sort Jiang, Zheng
collection PubMed
description Microwave staring correlated imaging (MSCI), with the technical capability of high-resolution imaging on relatively stationary targets, is a promising approach for remote sensing. For the purpose of continuous observation of a fixed key area, a tethered floating aerostat is often used as the carrying platform for MSCI radar system; however, its non-cooperative random motion of the platform caused by winds and its unbalance will result in blurred imaging, and even in imaging failure. This paper presents a method that takes into account the instabilities of the platform, combined with an adaptive variable suspension (AVS) and a position and orientation system (POS), which can automatically control the antenna beam orientation to the target area and measure dynamically the position and attitude of the stochastic radiation radar array, respectively. By analyzing the motion feature of aerostat platform, the motion model of the radar array is established, then its real-time position vector and attitude angles of each antenna can be represented; meanwhile the selection matrix of beam coverage is introduced to indicate the dynamic illumination of the radar antenna beam in the overall imaging area. Due to the low-speed discrete POS data, a curve-fitting algorithm can be used to estimate its accurate position vector and attitude of each antenna at each high-speed sampling time during the imaging period. Finally, the MSCI model based on the unsteady aerostat platform is set up. In the simulations, the proposed scheme is validated such that under the influence of different unstable platform movements, a better imaging performance can be achieved compared with the conventional MSCI method.
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spelling pubmed-66306502019-08-19 Microwave Staring Correlated Imaging Based on Unsteady Aerostat Platform Jiang, Zheng Guo, Yuanyue Deng, Jie Chen, Weidong Wang, Dongjin Sensors (Basel) Article Microwave staring correlated imaging (MSCI), with the technical capability of high-resolution imaging on relatively stationary targets, is a promising approach for remote sensing. For the purpose of continuous observation of a fixed key area, a tethered floating aerostat is often used as the carrying platform for MSCI radar system; however, its non-cooperative random motion of the platform caused by winds and its unbalance will result in blurred imaging, and even in imaging failure. This paper presents a method that takes into account the instabilities of the platform, combined with an adaptive variable suspension (AVS) and a position and orientation system (POS), which can automatically control the antenna beam orientation to the target area and measure dynamically the position and attitude of the stochastic radiation radar array, respectively. By analyzing the motion feature of aerostat platform, the motion model of the radar array is established, then its real-time position vector and attitude angles of each antenna can be represented; meanwhile the selection matrix of beam coverage is introduced to indicate the dynamic illumination of the radar antenna beam in the overall imaging area. Due to the low-speed discrete POS data, a curve-fitting algorithm can be used to estimate its accurate position vector and attitude of each antenna at each high-speed sampling time during the imaging period. Finally, the MSCI model based on the unsteady aerostat platform is set up. In the simulations, the proposed scheme is validated such that under the influence of different unstable platform movements, a better imaging performance can be achieved compared with the conventional MSCI method. MDPI 2019-06-24 /pmc/articles/PMC6630650/ /pubmed/31238598 http://dx.doi.org/10.3390/s19122825 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jiang, Zheng
Guo, Yuanyue
Deng, Jie
Chen, Weidong
Wang, Dongjin
Microwave Staring Correlated Imaging Based on Unsteady Aerostat Platform
title Microwave Staring Correlated Imaging Based on Unsteady Aerostat Platform
title_full Microwave Staring Correlated Imaging Based on Unsteady Aerostat Platform
title_fullStr Microwave Staring Correlated Imaging Based on Unsteady Aerostat Platform
title_full_unstemmed Microwave Staring Correlated Imaging Based on Unsteady Aerostat Platform
title_short Microwave Staring Correlated Imaging Based on Unsteady Aerostat Platform
title_sort microwave staring correlated imaging based on unsteady aerostat platform
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6630650/
https://www.ncbi.nlm.nih.gov/pubmed/31238598
http://dx.doi.org/10.3390/s19122825
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AT chenweidong microwavestaringcorrelatedimagingbasedonunsteadyaerostatplatform
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