Polarimetric RCS Calibration using Reference Reflectors

A new polarimetric radar cross section (RCS) calibration technique using two reference reflectors is developed and verified experimentally in the anechoic chamber of Multimedia University. The antenna system and the two orthogonal channels are modeled as a two-port network. The technique utilizes tw...

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Main Authors: Lo, Y. C., Chung, B. K.
Format: Article
Published: 2005
Subjects:
Online Access:http://shdl.mmu.edu.my/2359/
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author Lo, Y. C.
Chung, B. K.
author_facet Lo, Y. C.
Chung, B. K.
author_sort Lo, Y. C.
building MMU Institutional Repository
collection Online Access
description A new polarimetric radar cross section (RCS) calibration technique using two reference reflectors is developed and verified experimentally in the anechoic chamber of Multimedia University. The antenna system and the two orthogonal channels are modeled as a two-port network. The technique utilizes two electrically large reflectors, namely a rectangular flat plate and a 45 degrees rotated dihedral corner reflector as the calibration targets to provide large reflections for co-polarization and cross-polarization returns, respectively. The orientation of the reflectors is not critical, and their theoretical RCS are not required in the calibration process. Therefore the alignment problem and uncertainties in the computation of the theoretical responses are eliminated. A metallic sphere with known theoretical RCS is used to verify the calibration accuracy and determine the correction factor for absolute RCS measurement. Scattering measurements are performed using a Vector Network Analyzer (VNA). Raw data are acquired and stored in the PC for further processing. Time domain gating technique is applied to remove the target-chamber coupling effect in the measurements.
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spelling mmu-23592011-08-23T01:58:06Z http://shdl.mmu.edu.my/2359/ Polarimetric RCS Calibration using Reference Reflectors Lo, Y. C. Chung, B. K. TA Engineering (General). Civil engineering (General) A new polarimetric radar cross section (RCS) calibration technique using two reference reflectors is developed and verified experimentally in the anechoic chamber of Multimedia University. The antenna system and the two orthogonal channels are modeled as a two-port network. The technique utilizes two electrically large reflectors, namely a rectangular flat plate and a 45 degrees rotated dihedral corner reflector as the calibration targets to provide large reflections for co-polarization and cross-polarization returns, respectively. The orientation of the reflectors is not critical, and their theoretical RCS are not required in the calibration process. Therefore the alignment problem and uncertainties in the computation of the theoretical responses are eliminated. A metallic sphere with known theoretical RCS is used to verify the calibration accuracy and determine the correction factor for absolute RCS measurement. Scattering measurements are performed using a Vector Network Analyzer (VNA). Raw data are acquired and stored in the PC for further processing. Time domain gating technique is applied to remove the target-chamber coupling effect in the measurements. 2005 Article NonPeerReviewed Lo, Y. C. and Chung, B. K. (2005) Polarimetric RCS Calibration using Reference Reflectors. Journal of Electromagnetic Waves and Applications, 19 (13). pp. 1749-1759. ISSN 09205071 http://dx.doi.org/10.1163/156939305775696766 doi:10.1163/156939305775696766 doi:10.1163/156939305775696766
spellingShingle TA Engineering (General). Civil engineering (General)
Lo, Y. C.
Chung, B. K.
Polarimetric RCS Calibration using Reference Reflectors
title Polarimetric RCS Calibration using Reference Reflectors
title_full Polarimetric RCS Calibration using Reference Reflectors
title_fullStr Polarimetric RCS Calibration using Reference Reflectors
title_full_unstemmed Polarimetric RCS Calibration using Reference Reflectors
title_short Polarimetric RCS Calibration using Reference Reflectors
title_sort polarimetric rcs calibration using reference reflectors
topic TA Engineering (General). Civil engineering (General)
url http://shdl.mmu.edu.my/2359/
http://shdl.mmu.edu.my/2359/
http://shdl.mmu.edu.my/2359/