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利用低成本传感器在台湾开发地震预警系统的研究综述。

A Review on the Development of Earthquake Warning System Using Low-Cost Sensors in Taiwan.

机构信息

Department of Geosciences, National Taiwan University, Taipei 10617, Taiwan.

Institute of Earth Sciences, Academia Sinica, Taipei 11529, Taiwan.

出版信息

Sensors (Basel). 2021 Nov 18;21(22):7649. doi: 10.3390/s21227649.

Abstract

Seismic instrumentation for earthquake early warnings (EEWs) has improved significantly in the last few years, considering the station coverage, data quality, and the related applications. The official EEW system in Taiwan is operated by the Central Weather Bureau (CWB) and is responsible for issuing the regional warning for moderate-to-large earthquakes occurring in and around Taiwan. The low-cost micro-electro-mechanical system (MEMS)-based P-Alert EEW system is operational in Taiwan for on-site warnings and for producing shakemaps. Since 2010, this P-Alert system, installed by the National Taiwan University (NTU), has shown its importance during various earthquakes that caused damage in Taiwan. Although the system is capable of acting as a regional as well as an on-site warning system, it is particularly useful for on-site warning. Using real-time seismic signals, each P-Alert system can provide a 2-8 s-long warning time for the locations situated in the blind zone of the CWB regional warning system. The shakemaps plotted using this instrumentation help to assess the damage pattern and rupture directivity, a key feature in the risk mitigation process. These shakemaps are delivered to the intended users, including the disaster mitigation authorities, for possible relief purposes. Earlier, the network provided only peak ground acceleration (PGA) shakemaps, but has now been updated to include peak ground velocity (PGV), spectral acceleration (Sa) at different periods, and CWB intensity maps. The PGA and PGV shakemaps plotted using this network have proven helpful in establishing the fact that PGV is a better indicator of damage detection than PGA. This instrumentation is also useful in structural health-monitoring and estimating co-seismic deformations. Encouraged by the performance of the P-Alert network, more instruments are installed in Asia-Pacific countries.

摘要

近年来,地震预警(EEW)的地震仪器仪表得到了显著改善,这体现在台站覆盖范围、数据质量以及相关应用方面。台湾的官方 EEW 系统由中央气象局(CWB)运营,负责发布台湾及周边地区中强地震的区域预警。台湾运行的低成本微机电系统(MEMS)P-Alert EEW 系统用于现场预警和生成地震动图。自 2010 年以来,台湾大学(NTU)安装的这个 P-Alert 系统在多次造成台湾地区破坏的地震中发挥了重要作用。虽然该系统可以作为区域和现场预警系统,但它特别适用于现场预警。每个 P-Alert 系统使用实时地震信号,可为 CWB 区域预警系统盲区中的位置提供 2-8 秒的预警时间。使用这种仪器仪表绘制的地震动图有助于评估破坏模式和破裂方向,这是减轻风险过程中的一个关键特征。这些地震动图被提供给包括灾害减轻当局在内的预期用户,以便可能进行救援。早期,该网络仅提供峰值地面加速度(PGA)地震动图,但现已更新,包括峰值地面速度(PGV)、不同周期的谱加速度(Sa)和 CWB 烈度图。使用该网络绘制的 PGA 和 PGV 地震动图有助于证实 PGV 是比 PGA 更好的破坏检测指标这一事实。该仪器仪表在结构健康监测和估计同震变形方面也很有用。受 P-Alert 网络性能的鼓舞,更多的仪器在亚太国家安装。

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