HR: 1340h
AN: IN43A-0905 [Abstracts]
TI: Real-time shipboard displays for science operation and planning on CGC Healy
AU: * Roberts, S
EM: sroberts@ucar.edu
AF: University Corporation for Atmospheric Research, P.O. Box 3000, Boulder, CO 80307,
United States
AU: Chayes, D
AF: Lamont-Doherty Earth Observatory of Columbia University, 61 Route 9W, Palisades, NY
10964, United States
AU: Arko, R
AF: Lamont-Doherty Earth Observatory of Columbia University, 61 Route 9W, Palisades, NY
10964, United States
AB:
To facilitate effective science planning and decision making, we have developed a real-time geospatial browser
and other displays widely used by many if not all members of USCGC Healy's science cruises and some officers
and crew since 2004.
In order to enable a 'zero-configuration' experience to the end user with nearly any modern browser, on any
platform, anywhere on the ship with wired (or wireless) network access, we chose a Web-based/server-centric
approach that provides a very low barrier to access in an environment where we have
many participants constantly coming and going, often with their own computers.
The principle interface for planning and operational decision making is a georeferenced, Web-based user
interface built on the MapServer Web GIS platform developed at the University of Minnesota
(http://mapserver.gis.umn.edu/), using the PostGIS spatial database extensions (http://postgis.refractions.net/) to
enable live database connectivity. Data available include current ship position and orientation, historical ship
tracks and data, seafloor bathymetry, station locations, RADARSAT, and subbottom profiles among others. In
addition to the user interfaces that are part of individual instrumentation (such as the sonars and navigation
systems), custom interfaces have been developed to centralize data with high update rates such as sea surface
temperature, vessel attitude, position, etc.
Underlying data acquisition and storage is provided by the Lamont Data System (LDS) and the NOAA SCS
system. All data are stored on RAIDed disk systems and shared across a switched network with a gigabit fiber
backbone.
The real-time displays access data in a number of ways including real-time UDP datagrams from LDS,
accessing files on disk, and querying a PostgreSQL relational backend.
This work is supported by grants from the U.S. National Science Foundation, Office of Polar Programs, Arctic
Science section.
UR: http://ilab.ldeo.columbia.edu/projects/healy/
DE: 3000 MARINE GEOLOGY AND GEOPHYSICS
DE: 3045 Seafloor morphology, geology, and geophysics
SC: Earth and Space Science Informatics [IN]
MN: 2007 Fall Meeting