HR: 15:25h
AN: SA43B-08 [Abstracts]
TI: US-TEC: A new Data Assimilation Product from the Space Environment Center Characterizing the
Ionospheric Total Electron Content
AU: * Fuller-Rowell, T
EM: tim.fuller-rowell@noaa.gov
AF: Space Enviroment Center and CIRES, 325 Broadway, Boulder, CO 80305
United States
AU: Codrescu, M
EM: mihail.codrescu@noaa.gov
AF: Space Enviroment Center and CIRES, 325 Broadway, Boulder, CO 80305
United States
AU: Araujo-Pradere, E
EM: eduardo.pradere@noaa.gov
AF: Space Enviroment Center and CIRES, 325 Broadway, Boulder, CO 80305
United States
AU: Minter, C
EM: cliff.minter@noaa.gov
AF: Space Enviroment Center and CIRES, 325 Broadway, Boulder, CO 80305
United States
AU: Robertson, D
EM: doug@cires.colorado.edu
AF: National Geodetic Survey and CIRES, University of Colorado, Boulder, CO 80309
United States
AB:
The potential of data assimilation for operational numerical weather forecasting has been appreciated for many years. For
space weather it is a new path that we are just beginning to explore. With the emergence of satellite constellations and the
networks of ground based observations, sufficient data sources are now available to make the application of data assimilation
techniques a viable option. The first ionospheric space weather product to be launched by SEC utilizing data assimilation
techniques will be available in the fall of this year. The product, US-TEC, characterizes the ionospheric total electron
content. Extensive validation has quantified the differential and absolute accuracy of the product, which shows great promise
for application to GPS users. This is the first step along a path that will likely lead to major improvement in space
weather forecasting, paralleling the advances achieved in meteorological weather forecasting.
DE: 6934 Ionospheric propagation (2487)
DE: 2435 Ionospheric disturbances
DE: 2437 Ionospheric dynamics
DE: 2443 Midlatitude ionosphere
DE: 2447 Modeling and forecasting
SC: SPA-Aeronomy [SA]
MN: 2004 AGU Fall Meeting