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A Machine Learning-Based Detection of Earthquake Precursors Using Ionospheric Data

机译:基于机器学习的地震前体检测使用电离层数据

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摘要

Detection of precursors of strong earthquakes is a challenging research area. Recently, it has been shown that strong earthquakes affect electron distribution in the regional ionosphere with indirectly observable changes in the ionospheric delays of GPS signals. Especially, the total electron content (TEC) estimated from GPS data can be used in the seismic precursor detection for strong earthquakes. Although physical mechanisms are not well understood yet, GPS-based seismic precursors can be observed days prior to the occurrence of the earthquake. In this study, a novel machine learning-based technique, EQ-PD, is proposed for detection of earthquake precursors in near real time based on GPS-TEC data along with daily geomagnetic indices. The proposed EQ-PD technique utilizes support vector machine (SVM) classifier to decide whether an observed spatiotemporal anomaly is related to an earthquake precursor or not. The data fed to the classifier are composed of spatiotemporal variability map of a region. Performance of the EQ-PD technique is demonstrated in a case study over a region covering Italy in between the dates of 1 January 2014 and 30 September 2016. The data are partitioned into three nonoverlapping time periods, that are used for training, validation, and test of detecting precursors of earthquakes with magnitudes above 4 in Richter scale. The EQ-PD technique is able to detect precursors in 17 out of 21 earthquakes while generating 7 false alarms during the validation period of 266 days and 22 out of 24 earthquakes while generating 13 false alarms during the test period of 282 days.
机译:强烈地震前体的检测是一个具有挑战性的研究区。最近,已经表明强烈的地震影响了区域电离层中的电子分布,具有GPS信号的电离层延迟的间接可观察的变化。特别地,从GPS数据估计的总电子含量(TEC)可用于强烈地震的地震前体检测中。虽然物理机制尚不清楚,但是基于GPS的地震前体可以在发生地震之前观察到几天。在本研究中,提出了一种新颖的基于机器学习的技术,EQ-PD,用于根据GPS-TEC数据以及日常地磁指数检测接近实时地震前体。所提出的EQ-PD技术利用支持向量机(SVM)分类器来确定观察到的时空异常是否与地震前体有关。馈送到分类器的数据由区域的时空变化图组成。在2014年1月1日和2016年9月30日之间覆盖意大利的一个地区的案例研究中对EQ-PD技术的性能进行了说明。数据被划分为三个,其用于培训,验证和Richter Scale高于4的地震检测前体的检测。 EQ-PD技术能够在21个地震中17个中检测前体,同时在266天的验证期间产生7个误报,而24个地震中的22个,同时在282天的测试期间产生13个误报。

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