DocumentCode
1049426
Title
An experimental study of a pulse compression scatterometer system
Author
Schuler, Dale L.
Author_Institution
US Naval Res. Lab., Washington, DC, USA
Volume
2
Issue
1
fYear
1977
fDate
1/1/1977 12:00:00 AM
Firstpage
140
Lastpage
145
Abstract
The ideal scatterometer, operating from either an aircraft or a satellite platform, should be capable of making rapid, accurate estimates of the sea backscatter cross section
over as wide a range of grazing angles
as possible. Efficient operation over a large range of grazing angles is desirable because 1)
behavior for
yields rms gravity wave slope information and is an indicator of sea state and 2)
behavior for
yields data on surface wind magnitude and direction as well as information about the power spectrum of the sea. A "hybrid" estimation procedure has been developed for pulse compression radars which uses both frequency and spatially decorrelated samples of
to provide an unbiased estimate of
having minimum variance over the entire range of grazing angles for which radar reception is not noise-limited.
over as wide a range of grazing angles
as possible. Efficient operation over a large range of grazing angles is desirable because 1)
behavior for
yields rms gravity wave slope information and is an indicator of sea state and 2)
behavior for
yields data on surface wind magnitude and direction as well as information about the power spectrum of the sea. A "hybrid" estimation procedure has been developed for pulse compression radars which uses both frequency and spatially decorrelated samples of
to provide an unbiased estimate of
having minimum variance over the entire range of grazing angles for which radar reception is not noise-limited.Keywords
Chirp radar; Sea surface electromagnetic scattering; Aircraft; Backscatter; Frequency estimation; Gravity; Pulse compression methods; Radar measurements; Satellites; Sea surface; Spaceborne radar; Surface waves;
fLanguage
English
Journal_Title
Oceanic Engineering, IEEE Journal of
Publisher
ieee
ISSN
0364-9059
Type
jour
DOI
10.1109/JOE.1977.1145313
Filename
1145313
Link To Document