水准点(测量)
计算机科学
工具箱
震源
过程(计算)
机器学习
数据挖掘
软件
航程(航空)
任务(项目管理)
人工智能
诱发地震
地震学
系统工程
工程类
地质学
航空航天工程
程序设计语言
操作系统
大地测量学
作者
Jack Woollam,Jannes Münchmeyer,Frederik Tilmann,Andreas Rietbrock,Dietrich Lange,Thomas Bornstein,Tobias Diehl,Carlo Giunchi,Florian Haslinger,Dario Jozinović,Alberto Michelini,Joachim Saul,Hugo Soto
摘要
Abstract Machine-learning (ML) methods have seen widespread adoption in seismology in recent years. The ability of these techniques to efficiently infer the statistical properties of large datasets often provides significant improvements over traditional techniques when the number of data are large (millions of examples). With the entire spectrum of seismological tasks, for example, seismic picking and detection, magnitude and source property estimation, ground-motion prediction, hypocenter determination, among others, now incorporating ML approaches, numerous models are emerging as these techniques are further adopted within seismology. To evaluate these algorithms, quality-controlled benchmark datasets that contain representative class distributions are vital. In addition to this, models require implementation through a common framework to facilitate comparison. Accessing these various benchmark datasets for training and implementing the standardization of models is currently a time-consuming process, hindering further advancement of ML techniques within seismology. These development bottlenecks also affect “practitioners” seeking to deploy the latest models on seismic data, without having to necessarily learn entirely new ML frameworks to perform this task. We present SeisBench as a software package to tackle these issues. SeisBench is an open-source framework for deploying ML in seismology—available via GitHub. SeisBench standardizes access to both models and datasets, while also providing a range of common processing and data augmentation operations through the API. Through SeisBench, users can access several seismological ML models and benchmark datasets available in the literature via a single interface. SeisBench is built to be extensible, with community involvement encouraged to expand the package. Having such frameworks available for accessing leading ML models forms an essential tool for seismologists seeking to iterate and apply the next generation of ML techniques to seismic data.
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