Title :
A delay/Doppler-mapping receiver system for GPS-reflection remote sensing
Author :
Lowe, Stephen T. ; Kroger, Peter ; Franklin, Garth ; LaBrecque, John L. ; Lerma, Jesse ; Lough, Michael ; Marcin, Martin R. ; Muellerschoen, Ronald J. ; Spitzmesser, Donovan ; Young, Larry E.
Author_Institution :
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
fDate :
5/1/2002 12:00:00 AM
Abstract :
A delay/Doppler-mapping receiver system, developed specifically for global positioning system (GPS)-reflection remote sensing, is described, and example delay/Doppler waveforms are presented. The high-quality data obtained with this system provide a more accurate and detailed examination of ground-based and aircraft GPS-reflection phenomenology than has been available to date. As an example, systematic effects in the reflected signal delay waveform, due to nonideal behavior of the C/A-code auto-correlation function, are presented for the first time. Both a single-channel open-loop recording system and a recently developed 16-channel recorder are presented. The open-loop data from either recorder are postprocessed with a software GPS receiver that performs the following functions: signal detection; phase and delay tracking; delay, Doppler, and delay/Doppler waveform mapping; dual-frequency (L1 and L2) processing; C/A-code and Y-code waveform extraction; coherent integrations as short as 125 μs; navigation message decoding; and precise observable time tagging. The software can perform these functions on all detectable satellite signals without dead time, and custom signal-processing features can easily be included into the system
Keywords :
Global Positioning System; geophysical equipment; geophysical techniques; hydrological equipment; hydrological techniques; oceanographic equipment; oceanographic techniques; remote sensing by radar; spaceborne radar; terrain mapping; vegetation mapping; GPS; GPS-Reflection Remote Sensing; biomass; bistatic radar; delay Doppler mapping receiver system; equipment; geophysical measurement technique; hydrology; instrument; land surface; ocean; radar remote sensing; sea ice; sea surface; snowcover; snowpack; soil moisture; spaceborne radar; terrain mapping; vegetation mapping; Aircraft; Autocorrelation; Data mining; Delay effects; Global Positioning System; Propagation delay; Remote sensing; Signal detection; Signal mapping; Software performance;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2002.1010901