HR: 10:35h
AN: IN32A-02 [Abstracts]
TI: Online Interactive Data Analysis of Multi-Sensor Data Using Giovanni
AU: * Berrick, S
EM: Stephen.W.Berrick@nasa.gov
AF: NASA, Goddard Space Flight Center
Code 610.2, Greenbelt, MD 20771
United States
AU: Leptoukh, G
EM: Gregory.G.Leptoukh@nasa.gov
AF: NASA, Goddard Space Flight Center
Code 610.2, Greenbelt, MD 20771
United States
AU: Liu, Z
EM: zliu@daac.gsfc.nasa.gov
AF: George Mason University, Goddard Space Flight Center
Code 610.2, Greenbelt, MD 20771
United States
AU: Rui, H
EM: rui@daac.gsfc.nasa.gov
AF: Science Systems and Applications, Inc., Goddard Space Flight Center
Code 610.2, Greenbelt, MD 20771
United States
AU: Shen, S
EM: sshen@daac.gsfc.nasa.gov
AF: George Mason University, Goddard Space Flight Center
Code 610.2, Greenbelt, MD 20771
United States
AU: Teng, W
EM: teng@daac.gsfc.nasa.gov
AF: Science Systems and Applications, Inc., Goddard Space Flight Center
Code 610.2, Greenbelt, MD 20771
United States
AU: Zhu, T
EM: zhu@daac.gsfc.nasa.gov
AF: Science Systems and Applications, Inc., Goddard Space Flight Center
Code 610.2, Greenbelt, MD 20771
United States
AB:
The goal of the GES-DISC Interactive Online Visualization and Analysis System
(Giovanni) is to provide earth science users a means for performing data
analysis on data in the Goddard Earth Sciences (GES) Distributed Active Archive Center (DAAC) without having to download the
data. Through Giovanni, users are able
to apply statistical analysis on many individual gridded global data products
across multiple instruments and even inter-compare parameters from more than
one instrument. Giovanni currently allows users to select a time window and a
region of interest to generate many graphical output types including area plots
(time-averaged), time-series (area-averaged), Hovmoller (latitude vs. time,
longitude vs. time), and animations for area plots. A number of graphical
output types are also available for parameter inter-comparisons. ASCII output is
also available for those who want to apply their own analysis software. Using
the knowledge gained from Giovanni, a user can minimize the amount of data they
need to download while maximizing the amount of relevant content in those data.
The design challenges of Giovanni are (1) to successfully balance a simple,
intuitive Web interface with the complexity and heterogeneity of our
data, (2) to have a simple and flexible configuration so that new
data sets and parameters can be added and organized for particular user
communities, (3) to be agnostic with respect to the analysis software and
graphing software and, (4) scalability. In a short time, the original Giovanni
(Giovanni 1) has grown from two instances to eight (Giovanni 2), each tailored
for a specific user community. The demand, however, for Giovanni and its
capabilities continues to increase and in order to meet those demands, a
redesign effort of Giovanni, which we call Giovanni 3, is being undertaken.
UR: http://giovanni.gsfc.nasa.gov/
DE: 0300 ATMOSPHERIC COMPOSITION AND STRUCTURE
DE: 0820 Curriculum and laboratory design
DE: 4200 OCEANOGRAPHY: GENERAL
DE: 9800 GENERAL OR MISCELLANEOUS
SC: Earth and Space Science Informatics [IN]
MN: Fall Meeting 2005