DocumentCode :
792389
Title :
The autocorrelation of waveforms generated from ocean-scattered GPS signals
Author :
You, Huaizu ; Garrison, James L. ; Heckler, Gregory ; Smajlovic, Dino
Author_Institution :
Sch. of Aeronaut. & Astronaut., Purdue Univ., West Lafayette, IN, USA
Volume :
3
Issue :
1
fYear :
2006
Firstpage :
78
Lastpage :
82
Abstract :
A "waveform" is generated by cross-correlating local copies of a global positioning system (GPS) signal with an ocean-reflected GPS signal, over a range of carrier frequencies and code delays. The shape of this waveform can be inverted to obtain estimates of the ocean surface roughness. To assess the accuracy of these retrievals, a stochastic model for the waveform time series measurements was developed in a previous publication. In this letter, this model is validated by comparing the predicted autocorrelation function of the waveform against the autocorrelation computed from experimental waveforms collected from an airborne receiver. A 1-ms coherent integration time was used at first. Then, blocks of these measurements were concatenated to produce equivalent integration times of up to 5 ms to compare the dependence of model predictions on integration time. Correlation time was estimated by fitting a model Gaussian function to the magnitude or the real part of the autocorrelation function. The magnitude and phase of the complex autocorrelation function from the model were also studied to show the location of the first , and better explain cases in which the Gaussian function did not fit well. The autocorrelation is found to be weakly dependent upon the surface roughness, over a range of moderate wind speeds.
Keywords :
Global Positioning System; geophysical signal processing; ocean waves; oceanographic techniques; remote sensing by radar; Gaussian function; Global Positioning System; carrier frequency; code delays; multistatic scattering; ocean surface roughness; ocean-scattered GPS signals; radar measurements; radar scattering; radar signal analysis; random media; remote sensing; spread spectrum radar; stochastic model; waveform autocorrelation function; waveform time series measurements; Autocorrelation; Frequency; Global Positioning System; Predictive models; Rough surfaces; Sea measurements; Sea surface; Signal generators; Surface roughness; Time measurement; Multistatic scattering; radar measurements; radar scattering; radar signal analysis; random media; remote sensing; spread spectrum radar;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing Letters, IEEE
Publisher :
ieee
ISSN :
1545-598X
Type :
jour
DOI :
10.1109/LGRS.2005.856704
Filename :
1576694
Link To Document :
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