OKSP: A Novel Deep Learning Automatic Event Detection Pipeline for Seismic Monitoringin Costa Rica
Leonardo van der Laat, Ronald J.L. Baldares, Esteban J. Chaves,, Esteban Meneses

TL;DR
This paper introduces OKSP, a deep learning pipeline that significantly improves automatic earthquake detection in Costa Rica, identifying numerous small earthquakes and providing insights into seismic activity with high accuracy.
Contribution
The paper presents the first deep learning-based earthquake detection system for Costa Rica, demonstrating high accuracy and uncovering previously unidentified small earthquakes around a major seismic event.
Findings
Detected 1100 additional earthquakes, including small magnitude events.
Achieved 100% exhaustiveness and 82% precision in detection.
F1 score of 0.90 indicates high overall performance.
Abstract
Small magnitude earthquakes are the most abundant but the most difficult to locate robustly and well due to their low amplitudes and high frequencies usually obscured by heterogeneous noise sources. They highlight crucial information about the stress state and the spatio-temporal behavior of fault systems during the earthquake cycle, therefore, its full characterization is then crucial for improving earthquake hazard assessment. Modern DL algorithms along with the increasing computational power are exploiting the continuously growing seismological databases, allowing scientists to improve the completeness for earthquake catalogs, systematically detecting smaller magnitude earthquakes and reducing the errors introduced mainly by human intervention. In this work, we introduce OKSP, a novel automatic earthquake detection pipeline for seismic monitoring in Costa Rica. Using Kabre…
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Taxonomy
TopicsSeismology and Earthquake Studies · Earthquake Detection and Analysis · Seismic Waves and Analysis
