DocumentCode
965483
Title
Comparison of Calibration Techniques for Ground-Based C-Band Radiometers
Author
Tien, Kai-Jen C. ; De Roo, Roger D. ; Judge, Jasmeet ; Pham, Hanh
Author_Institution
Dept. of Agric. Eng., Florida Univ., Gainesville, FL
Volume
4
Issue
1
fYear
2007
Firstpage
83
Lastpage
87
Abstract
We quantify the performance of three commonly used techniques to calibrate ground-based microwave radiometers for soil moisture studies, external (EC), tipping-curve (TC), and internal (IC). We describe two ground-based C-band radiometer systems with similar design and the calibration experiments conducted in Florida and Alaska using these two systems. We compare the consistency of the calibration curves during the experiments among the three techniques and evaluate our calibration by comparing the measured brightness temperatures (TBs) to those estimated from a lake emission model (LEM). The mean absolute difference among the TBs calibrated using the three techniques over the observed range of output voltages during the experiments was 1.14 K. Even though IC produced the most consistent calibration curves, the differences among the three calibration techniques were not significant. The mean absolute errors (MAEs) between the observed and LEM TB s were about 2-4 K. As expected, the utility of TC at C-band was significantly reduced due to transparency of the atmosphere at these frequencies. Because IC was found to have a MAE of about 2 K that is suitable for soil moisture applications and was consistent during our experiments under different environmental conditions, it could augment less frequent calibrations obtained using the EC or TC techniques
Keywords
calibration; microwave detectors; moisture; radiometers; radiometry; soil; Alaska; Florida; USA; brightness temperatures; calibration techniques; ground-based C-band radiometers; ground-based microwave radiometers; lake emission model; mean absolute errors; soil moisture studies; Atmosphere; Brightness temperature; Calibration; Lakes; Microwave integrated circuits; Microwave theory and techniques; Radiometers; Soil moisture; Temperature measurement; Voltage; Calibration; microwave radiometry; soil moisture;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing Letters, IEEE
Publisher
ieee
ISSN
1545-598X
Type
jour
DOI
10.1109/LGRS.2006.886420
Filename
4063311
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