计算机科学
地震位置
预警系统
利用
到达时间
实时计算
地震预警系统
到达时间
遥感
地震学
地质学
电信
无线
计算机安全
诱发地震
工程类
运输工程
作者
Omar M. Saad,Yunfeng Chen,Daniel T. Trugman,M. Sami Soliman,Lotfy Samy,Alexandros Savvaidis,Mohamed A. Khamis,Ali G. Hafez,Sergey Fomel,Yangkang Chen
标识
DOI:10.1109/lgrs.2022.3142714
摘要
We develop a random forest (RF) model for rapid earthquake location with an aim to assist earthquake early warning (EEW) systems in fast decision making. This system exploits P-wave arrival times at the first five stations recording an earthquake and computes their respective arrival time differences relative to a reference station (i.e., the first recording station). These differential P-wave arrival times and station locations are classified in the RF model to estimate the epicentral location. We train and test the proposed algorithm with an earthquake catalog from Japan. The RF model predicts the earthquake locations with high accuracy, achieving a mean absolute error (MAE) of 2.88 km. As importantly, the proposed RF model can learn from a limited amount of data (i.e., 10% of the dataset) and much fewer (i.e., three) recording stations and still achieve satisfactory results (MAE < 5 km). The algorithm is accurate, generalizable, and rapidly responding, thereby offering a powerful new tool for fast and reliable source-location prediction in EEW.
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