HR: 1340h
AN: S13C-1444 [Abstracts]
TI: A Real-Time CISN Test Bed for the ElarmS Early Warning Algorithm
AU: * Neuhauser, D S
EM: doug@seismo.berkeley.edu
AF: Berkeley Seismological Laboratory, University of California Berkeley,
215 McCone Hall #4760, Berkeley, CA 94720-4760, United States
AU: Kireev, A
EM: alexei@seismo.berkeley.edu
AF: Berkeley Seismological Laboratory, University of California Berkeley,
215 McCone Hall #4760, Berkeley, CA 94720-4760, United States
AU: Wurman, G
EM: gwurman@seismo.berkeley.edu
AF: Berkeley Seismological Laboratory, University of California Berkeley,
215 McCone Hall #4760, Berkeley, CA 94720-4760, United States
AU: Hellweg, M
EM: peggy@seismo.berkeley.edu
AF: Berkeley Seismological Laboratory, University of California Berkeley,
215 McCone Hall #4760, Berkeley, CA 94720-4760, United States
AU: Allen, R
EM: rallen@seismo.berkeley.edu
AF: Berkeley Seismological Laboratory, University of California Berkeley,
215 McCone Hall #4760, Berkeley, CA 94720-4760, United States
AB:
The ElarmS earthquake early warning (EEW) algorithm, initially designed and
tested on data collected from earthquake in southern California, is being
tested on real-time network data from the California Integrated Seismic
Network. In order to take advantage of the real-time broadband and strong
motion data available in California, we have decomposed the ElarmS algorithm
into several fundamental components: a waveform processing and phase detection
module, and the ElarmS event processing module (EVM).
Using a framework generator developed by Caltech that automatically generates
stub code for waveform processing, we implemented the E waveform
processing algorithms for filtering, peak ground motions, tau-p, and phase detection in a separate
real-time module that runs at the distributed CISN waveform acquisition and
processing centers at UC Berkeley, USGS Menlo Park, and Caltech. We
developed a low latency real-time distribution system to distribute and
aggregate the processed waveform attributes to one or more ElarmS processing
centers. A newly developed API provides the EVM component of the ElarmS
algorithm with the real-time waveform attributes and phase detections.
In order to monitor, analyse and refine the ElarmS algorithm, we implemented a
real-time monitoring module that monitors the state of EVM, which archives all
processed waveform data in the order they were received whenever EVM detects an
event or aborts. The waveform datasets will allow us to replay the exact waveform
sequence seen in real-time in order to identify coding or algorithmic
problems, and to evaluate refinements in the ElarmS EVM algorithm. The
monitoring system also controls the event post-processing software used to
generate the ElarmS Alertmaps and event web pages, and to submit data to the CISN EEW
algorithm evaluation database developed by SCEC.
DE: 7212 Earthquake ground motions and engineering seismology
DE: 7294 Seismic instruments and networks (0935, 3025)
SC: Seismology [S]
MN: 2007 Fall Meeting