DocumentCode :
1199763
Title :
HUT fully polarimetric calibration standard for microwave radiometry
Author :
Lahtinen, Janne ; Hallikainen, Martti T.
Author_Institution :
Lab. of Space Technol., Helsinki Univ. of Technol., Espoo, Finland
Volume :
41
Issue :
3
fYear :
2003
fDate :
3/1/2003 12:00:00 AM
Firstpage :
603
Lastpage :
611
Abstract :
This paper describes the Helsinki University of Technology´s Fully Polarimetric Calibration Standard (FPCS). The developed standard generates a complete Stokes reference vector and it is applied for the end-to-end absolute calibration of a fully polarimetric microwave radiometer at 36.5 GHz. The FPCS is based on the function principle of a Gasiewski-Kunkee linearly polarized (tripolarimetric) standard, with an additional phase retardation plate to generate the fourth Stokes parameter. Design considerations and operational aspects of the standard are discussed in this paper. An advanced calibration procedure, which takes advantage of both the tripolarimetric and fully polarimetric calibration scenes to suppress calibration uncertainties, is introduced. The feasibility of the standard has been verified and the generated brightness temperatures in a sample calibration are presented. An extensive set of tests has been performed to evaluate the characteristics and performance of the calibration standard. Furthermore, the use of the advanced calibration procedure to measure the characteristics of the phase retardation plate has been successfully demonstrated. The achievable calibration accuracy is analyzed and discussed relative to requirements for maritime wind vector measurements; the results indicate that the pixel-to-pixel retrieval of the wind speed is possible with high accuracy and the retrieval of the wind direction with at least moderate accuracy. In addition to calibration of a fully polarimetric radiometer, other potential applications, e.g., linearity measurements, are discussed.
Keywords :
atmospheric measuring apparatus; atmospheric techniques; calibration; geophysical equipment; geophysical techniques; radiometers; radiometry; remote sensing; terrain mapping; wind; 36.5 GHz; EHF; Gasiewski-Kunkee linearly polarized standard; HUT; Helsinki University Technology; Stokes reference vector; atmosphere; fourth Stokes parameter; fully polarimetric calibration standard; function principle; geophysical measurement technique; instrument; land surface; microwave radiometry; phase retardation plate; polarimetric microwave radiometer; radiometer; remote sensing; terrain mapping; wind; Brightness temperature; Calibration; Flexible printed circuits; Layout; Microwave generation; Microwave radiometry; Polarization; Standards development; Stokes parameters; Testing;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2003.810206
Filename :
1198651
Link To Document :
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