A Comprehensive Method of Ambiguity Suppression for Constellation of Geostationary and Low Earth Orbit SAR

ConGalSAR is a novel SAR constellation that has an outstanding performance of revisit and economy. In the system, with the MirrorSAR technology, one geostationary illuminator and several economical low earth orbit transponders work together to achieve a short revisiting interval. Because of the huge...

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Main Authors: Peng Xiao, Wei Guo, Youming Wu, Bo Liu
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9116933/
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spelling doaj-ea1b0e809ccd4829809885d851cf01ac2021-06-03T23:01:51ZengIEEEIEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing2151-15352020-01-01133327333510.1109/JSTARS.2020.30023929116933A Comprehensive Method of Ambiguity Suppression for Constellation of Geostationary and Low Earth Orbit SARPeng Xiao0https://orcid.org/0000-0001-7129-4614Wei Guo1https://orcid.org/0000-0002-6508-0940Youming Wu2https://orcid.org/0000-0002-5927-364XBo Liu3https://orcid.org/0000-0002-0951-3115Qian Xuesen Laboratory of Space Technology, China Academy of Space Technology, Beijing, ChinaDepartment of Land Surveying and Geo-Informatics, The Hong Kong Polytechnic University, Hong KongAerospace Information Research Institute, Chinese Academy of Sciences, Beijing, ChinaQian Xuesen Laboratory of Space Technology, China Academy of Space Technology, Beijing, ChinaConGalSAR is a novel SAR constellation that has an outstanding performance of revisit and economy. In the system, with the MirrorSAR technology, one geostationary illuminator and several economical low earth orbit transponders work together to achieve a short revisiting interval. Because of the huge difference in the distances of transmitting and receiving, the spatial weighting of the antenna patterns on the ground is quite different, which leads to the deterioration of ambiguity to signal ratio. The multiphase center and digital beamforming antennas can suppress the ambiguity energy; however, they are too expensive and heavy to be equipped on the dozens of transponding nanosatellites. In this article, a comprehensive ambiguity suppression method, including the reflector antenna design and signal processing, is proposed to reduce the ambiguity ratio, which well solves the ambiguity problem under the condition of the low manufacturing costs and lightweight transponders. In terms of the hardware design, the multifeed reflector antenna is applied to the transponder, in which the feeds receive an echo together. Based on this, the low sidelobes beamforming is achieved to well suppress the ambiguity. Meanwhile, the amplitude-modulated chirps are also used here aiming at the residual ambiguity in the large dynamic scene. Through spectral selection and extrapolation processing, range ambiguity energy is suppressed more while preserving the resolution. The digital simulations show that the comprehensive method can realize -20 dB ambiguity ratios at least, which conforms to the ambiguity-to-signal ratio design of ConGaLSAR.https://ieeexplore.ieee.org/document/9116933/Ambiguity suppressionbistatic SAR (BiSAR)multifeed reflector antennaspectral selection and extrapolationsynthetic aperture radar (SAR)
collection DOAJ
language English
format Article
sources DOAJ
author Peng Xiao
Wei Guo
Youming Wu
Bo Liu
spellingShingle Peng Xiao
Wei Guo
Youming Wu
Bo Liu
A Comprehensive Method of Ambiguity Suppression for Constellation of Geostationary and Low Earth Orbit SAR
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing
Ambiguity suppression
bistatic SAR (BiSAR)
multifeed reflector antenna
spectral selection and extrapolation
synthetic aperture radar (SAR)
author_facet Peng Xiao
Wei Guo
Youming Wu
Bo Liu
author_sort Peng Xiao
title A Comprehensive Method of Ambiguity Suppression for Constellation of Geostationary and Low Earth Orbit SAR
title_short A Comprehensive Method of Ambiguity Suppression for Constellation of Geostationary and Low Earth Orbit SAR
title_full A Comprehensive Method of Ambiguity Suppression for Constellation of Geostationary and Low Earth Orbit SAR
title_fullStr A Comprehensive Method of Ambiguity Suppression for Constellation of Geostationary and Low Earth Orbit SAR
title_full_unstemmed A Comprehensive Method of Ambiguity Suppression for Constellation of Geostationary and Low Earth Orbit SAR
title_sort comprehensive method of ambiguity suppression for constellation of geostationary and low earth orbit sar
publisher IEEE
series IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing
issn 2151-1535
publishDate 2020-01-01
description ConGalSAR is a novel SAR constellation that has an outstanding performance of revisit and economy. In the system, with the MirrorSAR technology, one geostationary illuminator and several economical low earth orbit transponders work together to achieve a short revisiting interval. Because of the huge difference in the distances of transmitting and receiving, the spatial weighting of the antenna patterns on the ground is quite different, which leads to the deterioration of ambiguity to signal ratio. The multiphase center and digital beamforming antennas can suppress the ambiguity energy; however, they are too expensive and heavy to be equipped on the dozens of transponding nanosatellites. In this article, a comprehensive ambiguity suppression method, including the reflector antenna design and signal processing, is proposed to reduce the ambiguity ratio, which well solves the ambiguity problem under the condition of the low manufacturing costs and lightweight transponders. In terms of the hardware design, the multifeed reflector antenna is applied to the transponder, in which the feeds receive an echo together. Based on this, the low sidelobes beamforming is achieved to well suppress the ambiguity. Meanwhile, the amplitude-modulated chirps are also used here aiming at the residual ambiguity in the large dynamic scene. Through spectral selection and extrapolation processing, range ambiguity energy is suppressed more while preserving the resolution. The digital simulations show that the comprehensive method can realize -20 dB ambiguity ratios at least, which conforms to the ambiguity-to-signal ratio design of ConGaLSAR.
topic Ambiguity suppression
bistatic SAR (BiSAR)
multifeed reflector antenna
spectral selection and extrapolation
synthetic aperture radar (SAR)
url https://ieeexplore.ieee.org/document/9116933/
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