DocumentCode
2059939
Title
Geophysical model functions for the sea state bias in satellite altimetry
Author
Glazman, Roman E. ; Greysukh, Alexander ; Zlotnicki, Victor
Author_Institution
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
fYear
1993
fDate
18-21 Aug 1993
Firstpage
1577
Abstract
The sea state bias in altimeter measurements of sea surface height have been investigated by many authors, resulting in several proposed algorithms of the form SSB=εH where H is the significant wave height (SWH) and ε is a non-dimensional function of wind and wave parameters. All known algorithms are presently rated. The most popular, linear model of the form ε=a0+a1U is shown to yield an improvement over the simplest algorithm with a constant ε. A three-parameter form ε=a0+a1U+a2H produces even better results. However, the accuracy of the polynomial models is below that obtained with a two-parameter, physically-based model relating ε to the pseudo-wave-age ξ: ε=Mξ-m. The ξ is estimated using altimeter wind U and SWH: ξ≈A(gH/U)V where A and v are constants. By analyzing the performance of different models we conclude that further progress can hardly be achieved by raising the degree of the polynomial for ε(U,H). Physically-based approaches employing a small number of adjustable parameters and theoretically justified non-dimensional combinations of external wind and wave factors appear to be more promising
Keywords
atmospheric techniques; geophysical techniques; ocean waves; oceanographic techniques; remote sensing; remote sensing by radar; wind; algorithm; atmosphere wind; geophysical method; geophysical model function; linear model; measurement technique; ocean wave sea surface height; polynomial model; radar altimetry; radar remote sensing; satellite; satellite altimetry; sea state bias; significant wave height; three-parameter form; Altimetry; Amplitude modulation; Polynomials; Propulsion; Pulse shaping methods; Satellites; Sea level; Sea surface; Surface waves; Wind speed;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium, 1993. IGARSS '93. Better Understanding of Earth Environment., International
Conference_Location
Tokyo
Print_ISBN
0-7803-1240-6
Type
conf
DOI
10.1109/IGARSS.1993.322446
Filename
322446
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