DocumentCode :
1345157
Title :
ERS-1 scatterometer measurements. II. An algorithm for ocean-surface wind retrieval including light winds
Author :
Rufenach, Clifford L.
Author_Institution :
Cooperative Inst. for Res. in Environ. Sci., Colorado Univ., Boulder, CO, USA
Volume :
36
Issue :
2
fYear :
1998
fDate :
3/1/1998 12:00:00 AM
Firstpage :
623
Lastpage :
635
Abstract :
For pt.I see ibid., vol.36, no.2, p.603-22 (1998). An algorithm for retrieving European Remote Sensing Satellite (ERS-1) scatterometer winds, denoted the Rufenach-Bates-Tosini (RBT) algorithm, is developed and used to retrieve winds collocated within ±25 km of buoy measurements in two oceanic regions, equatorial and midlatitude. An improvement in the retrieved RBT winds over the European Space Agency (ESA) winds is due mainly to a geophysical model employing the full available wind-speed range, including the lightest winds. This model, denoted BMOD5, is tuned by using the scatterometer and buoy measurements, resulting in two different models for the midlatitude and equatorial regions. The RBT retrieved winds exhibit (1) a larger number of solutions (wind vectors) and (2) smaller biases in wind speed than the ESA wind product. The increase in the number of retrieved winds is primarily due to lighter winds employed, 0.2 m/s to 18 m/s; whereas, the ESA winds are truncated near 3 m/s. The ESA winds underestimate the highest winds significantly, by about 20%, and overestimate the lightest winds. The RBT wind bias is less than a few percent at the highest winds and a few tenths of a m/s at the lowest winds. Both algorithms retrieve 180° ambiguous directions almost as often as the true direction. Regression fits to the winds using the RBT algorithm produce standard deviations of 1 m/s and 25° near the equator for winds varying from 0.2-10 m/s and 1.2 m/s and 250 at midlatitudes for winds varying from 0.2-18 m/s, provided that the ambiguities are removed
Keywords :
atmospheric boundary layer; atmospheric techniques; geophysical signal processing; meteorological radar; radar signal processing; remote sensing by radar; spaceborne radar; wind; ERS-1 scatterometry; Rufenach-Bates-Tosini algorithm; boundary layer; equatorial atmosphere; marine atmosphere; measurement technique; meteorological radar; middle latitude; midlatitude; radar remote sensing; radar signal processing; retrieval algorithm; spaceborne radar; Extraterrestrial measurements; Geophysical measurements; Radar cross section; Radar measurements; Remote sensing; Satellites; Sea measurements; Space vehicles; Spaceborne radar; Wind speed;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/36.662743
Filename :
662743
Link To Document :
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