HR: 0830h
AN: NG11A-0164 [PDF]
TI: WEB-IS2: Next Generation Web Services Using Amira Visualization Package
AU: * Yang, X
EM: lilli@msi.umn.edu
AF: Dept. of Geology and Geophysics and Minnesota Supercomputing Institute, Univ. of Minnesota,
Minneapolis, MN 55455 United States
AU: Wang, Y
EM: yunsong@csit.fsu.edu
AF: School of Computational Science and Information Technology, Florida State University, Tallahassee, FL
32306 United States
AU: Bollig, E F
EM: bollig@msi.umn.edu
AF: Dept. of Geology and Geophysics and Minnesota Supercomputing Institute, Univ. of Minnesota,
Minneapolis, MN 55455 United States
AU: Kadlec, B J
EM: kadlec@msi.umn.edu
AF: Dept. of Geology and Geophysics and Minnesota Supercomputing Institute, Univ. of Minnesota,
Minneapolis, MN 55455 United States
AU: Garbow, Z A
EM: garbowza@us.ibm.com
AF: IBM, 3605 Highway 52N, Rochester, MN 55901 United States
AU: Yuen, D A
EM: davey@krissy.geo.umn.edu
AF: Dept. of Geology and Geophysics and Minnesota Supercomputing Institute, Univ. of Minnesota,
Minneapolis, MN 55455 United States
AU: Erlebacher, G
EM: erlebach@csit.fsu.edu
AF: School of Computational Science and Information Technology, Florida State University, Tallahassee, FL
32306 United States
AB:
Amira (www.amiravis.com) is a powerful 3-D visualization package and has been employed
recently by the science and engineering communities to gain insight into
their data. We present a new web-based interface to Amira, packaged in a
Java applet. We have developed a module called WEB-IS/Amira (WEB-IS2),
which provides web-based access to Amira. This tool allows earth
scientists to manipulate Amira controls remotely and to analyze, render
and view large datasets over the internet, without regard for time or
location. This could have important ramifications for GRID computing. The design of our implementation will soon allow
multiple users to
visually collaborate by manipulating a single dataset through a variety
of client devices. These clients will only require a browser capable of
displaying Java applets. As the deluge of data continues, innovative
solutions that maximize ease of use without sacrificing efficiency or
flexibility will continue to gain in importance, particularly in the
Earth sciences. Major initiatives, such as Earthscope
(http://www.earthscope.org), which will generate at least a terabyte of
data daily, stand to profit enormously by a system such as WEB-IS/Amira
(WEB-IS2). We discuss our use of SOAP (Livingston, D., Advanced SOAP for Web development, Prentice Hall, 2002), a novel 2-way
communication protocol,
as a means of providing remote commands, and efficient point-to-point
transfer of binary image data. We will present our initial experiences
with the use of Naradabrokering (www.naradabrokering.org) as a means to decouple clients and
servers. Information is submitted to the system as a published item,
while it is retrieved through a subscription mechanisms, via what is
known as "topics". These topic headers, their contents, and the list of
subscribers are automatically tracked by Naradabrokering. This novel
approach promises a high degree of fault tolerance, flexibility with
respect to client diversity, and language independence for the services (Erlebacher, G., Yuen, D.A., and F. Dubuffet, Current
trends and demands in visualization in the geosciences, Electron. Geosciences, 4, 2001).
UR: http://boy.msi.umn.edu/amira
DE: 0910 Data processing
DE: 0999 General or miscellaneous
SC: Nonlinear Geophysics [NG]
MN: 2003 Fall Meeting