Digitized Metamaterial Absorber-Based Compressive Reflector Antenna for High Sensing Capacity Imaging

Conventional multistatic radar systems using microwave and millimeter-wave (mm-wave) frequencies seek to reconstruct the target in the imaging domain, employing many transmitting and receiving antenna elements. These systems are suboptimal, in that they do not take into consideration the large mutua...

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Main Authors: Ali Molaei, Juan Heredia-Juesas, Galia Ghazi, James Vlahakis, Jose Angel Martinez-Lorenzo
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8584434/
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spelling doaj-615c00a7acf94b98b12a9806839b45442021-03-29T22:09:18ZengIEEEIEEE Access2169-35362019-01-0171160117310.1109/ACCESS.2018.28811038584434Digitized Metamaterial Absorber-Based Compressive Reflector Antenna for High Sensing Capacity ImagingAli Molaei0Juan Heredia-Juesas1Galia Ghazi2James Vlahakis3Jose Angel Martinez-Lorenzo4https://orcid.org/0000-0002-0924-8112Department of Electrical and Computer Engineering, Northeastern University, Boston, MA, USADepartment of Electrical and Computer Engineering, Northeastern University, Boston, MA, USADepartment of Electrical and Computer Engineering, Northeastern University, Boston, MA, USADepartment of Mechanical Engineering, Tufts University, Medford, MA, USADepartment of Electrical and Computer Engineering, Northeastern University, Boston, MA, USAConventional multistatic radar systems using microwave and millimeter-wave (mm-wave) frequencies seek to reconstruct the target in the imaging domain, employing many transmitting and receiving antenna elements. These systems are suboptimal, in that they do not take into consideration the large mutual information existing between the measurements. This paper reports a new mm-wave radar system for high sensing capacity applications. The system is composed of a compressive reflector antenna (CRA), whose surface is specially tailored by digitized metamaterial absorbers (MMAs). The MMA elements are designed to have a highly frequency-dispersive response in the operating band of the radar. This enables the CRA to create highly uncorrelated spatial and spectral codes in the imaging region. A semi-analytic method based on Drude–Lorentz model is used to approximate the reflection response of the MMAs. The performance of the developed radar system is evaluated in active mm-wave sensing systems by imaging PEC scatterers and an extended human-size model in the near-field of the radar. A computational method based on physical optics is established for solving the numerical examples. For reconstructing the image using compressive sensing techniques, a norm-1 regularized iterative algorithm based on the alternating direction method of multipliers and a Nesterov-based algorithm were applied.https://ieeexplore.ieee.org/document/8584434/Compressive reflector antennamillimeter-wave imagingmetamaterial absorbercoded aperture
collection DOAJ
language English
format Article
sources DOAJ
author Ali Molaei
Juan Heredia-Juesas
Galia Ghazi
James Vlahakis
Jose Angel Martinez-Lorenzo
spellingShingle Ali Molaei
Juan Heredia-Juesas
Galia Ghazi
James Vlahakis
Jose Angel Martinez-Lorenzo
Digitized Metamaterial Absorber-Based Compressive Reflector Antenna for High Sensing Capacity Imaging
IEEE Access
Compressive reflector antenna
millimeter-wave imaging
metamaterial absorber
coded aperture
author_facet Ali Molaei
Juan Heredia-Juesas
Galia Ghazi
James Vlahakis
Jose Angel Martinez-Lorenzo
author_sort Ali Molaei
title Digitized Metamaterial Absorber-Based Compressive Reflector Antenna for High Sensing Capacity Imaging
title_short Digitized Metamaterial Absorber-Based Compressive Reflector Antenna for High Sensing Capacity Imaging
title_full Digitized Metamaterial Absorber-Based Compressive Reflector Antenna for High Sensing Capacity Imaging
title_fullStr Digitized Metamaterial Absorber-Based Compressive Reflector Antenna for High Sensing Capacity Imaging
title_full_unstemmed Digitized Metamaterial Absorber-Based Compressive Reflector Antenna for High Sensing Capacity Imaging
title_sort digitized metamaterial absorber-based compressive reflector antenna for high sensing capacity imaging
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description Conventional multistatic radar systems using microwave and millimeter-wave (mm-wave) frequencies seek to reconstruct the target in the imaging domain, employing many transmitting and receiving antenna elements. These systems are suboptimal, in that they do not take into consideration the large mutual information existing between the measurements. This paper reports a new mm-wave radar system for high sensing capacity applications. The system is composed of a compressive reflector antenna (CRA), whose surface is specially tailored by digitized metamaterial absorbers (MMAs). The MMA elements are designed to have a highly frequency-dispersive response in the operating band of the radar. This enables the CRA to create highly uncorrelated spatial and spectral codes in the imaging region. A semi-analytic method based on Drude–Lorentz model is used to approximate the reflection response of the MMAs. The performance of the developed radar system is evaluated in active mm-wave sensing systems by imaging PEC scatterers and an extended human-size model in the near-field of the radar. A computational method based on physical optics is established for solving the numerical examples. For reconstructing the image using compressive sensing techniques, a norm-1 regularized iterative algorithm based on the alternating direction method of multipliers and a Nesterov-based algorithm were applied.
topic Compressive reflector antenna
millimeter-wave imaging
metamaterial absorber
coded aperture
url https://ieeexplore.ieee.org/document/8584434/
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