HR: 11:50h
AN: S32A-07 [Abstracts]
TI: The IRIS DMC: Perspectives on Real-Time Data Management and Open Access From a Large Seismological Archive: Challenges, Tools, and Quality Assurance
AU: * Benson, R B
EM: rick@iris.washington.edu
AF: IRIS Data Management Center, 1408 NE 45th St
Suite 201, Seattle, WA 98105, United States
AB:
The IRIS Data Management Center, located in Seattle, WA, is the largest openly accessible geophysical archive in
the world, and has a unique perspective on data management and operational practices that gets the most out of
your network. Networks scale broad domains in time and space, from finite needs to monitor bridges and dams
to national and international networks like the GSN and the FDSN that establish a baseline for global monitoring
and research, the requirements that go into creating a well-tuned DMC archive treat these the same, building a
collaborative network of networks that generations of users rely on and adds value to the data.
Funded by the National Science Foundation through the Division of Earth Sciences, IRIS is operated through
member universities and in cooperation with the USGS, and the DMS facility is a bridge between a globally
distributed collaboration of seismic networks and an equally distributed network of users that demand a high
standard for data quality, completeness, and ease of access. I will describe the role that a perpetual archive has
in the life cycle of data, and how hosting real-time data performs a dual role of being a hub for continuous data
from approximately 59 real-time networks, and distributing these (along with other data from the 40-year library of
available time-series data) to researchers, while simultaneously providing shared data back to networks in real-
time that benefits monitoring activities. I will describe aspects of our quality-assurance framework that are both
passively and actively performed on 1100 seismic stations, generating over 6,000 channels of regularly sampled
data arriving daily, that data providers can use as aids in operating their network, and users can likewise use
when requesting suitable data for research purposes. The goal of the DMC is to eliminate bottlenecks in data
discovery and shortening the steps leading to analysis.
This includes many challenges, including keeping metadata current, tools for evaluating and viewing them, along
with measuring and creating databases of other performance metrics and how monitoring them closer to real-
time helps reduce operation costs, creates a richer repository, and eliminates problems over generations of duty
cycles of data usage. I will describe a new resource, called the Nominal Response Library, which hopes to
provide accurate and representative examples of sensor and data logger configurations that are hosted at the
DMC and constitute a high-graded subset for crafting your own metadata. Finally, I want to encourage all network
operators who do not currently submit SEED format data to an archive to consider these benefits, and briefly
discuss how robust transfer mechanisms that include Earthworm, LISS, Antelope, NRTS and SeisComp, to
name a few, can assist you in contributing your network data and help create this enabling virtual network of
networks. In this era of high performance Internet capacity, the process that enables others to share your data
and allows you to utilize external sources of data is nearly seamless with your current mission of network
operation.
UR: http:www.iris.edu
DE: 7203 Body waves
DE: 7219 Seismic monitoring and test-ban treaty verification
DE: 7294 Seismic instruments and networks (0935, 3025)
SC: Seismology [S]
MN: 2007 Joint Assembly