Pierleoni Paola, Concetti Roberto, Belli Alberto, Palma Lorenzo, Marzorati Simone, Esposito Marco
Department of Information Engineering (DII), Università Politecnica delle Marche, 60131 Ancona, Italy.
Istituto di Istruzione Superiore Carlo Urbani, 63821 Porto Sant'Elpidio, Italy.
Sensors (Basel). 2023 Oct 13;23(20):8431. doi: 10.3390/s23208431.
An effective earthquake early warning system requires rapid and reliable earthquake source detection. Despite the numerous proposed epicenter localization solutions in recent years, their utilization within the Internet of Things (IoT) framework and integration with IoT-oriented cloud platforms remain underexplored. This paper proposes a complete IoT architecture for earthquake detection, localization, and event notification. The architecture, which has been designed, deployed, and tested on a standard cloud platform, introduces an innovative approach by implementing P-wave "picking" directly on IoT devices, deviating from traditional regional earthquake early warning (EEW) approaches. Pick association, source localization, event declaration, and user notification functionalities are also deployed on the cloud. The cloud integration simplifies the integration of other services in the architecture, such as data storage and device management. Moreover, a localization algorithm based on the hyperbola method is proposed, but here, the time difference of arrival multilateration is applied that is often used in wireless sensor network applications. The results show that the proposed end-to-end architecture is able to provide a quick estimate of the earthquake epicenter location with acceptable errors for an EEW system scenario. Rigorous testing against the standard of reference in Italy for regional EEW showed an overall 3.39 s gain in the system localization speed, thus offering a tangible metric of the efficiency and potential proposed system as an EEW solution.
一个有效的地震早期预警系统需要快速且可靠的震源检测。尽管近年来提出了众多震中定位解决方案,但它们在物联网(IoT)框架内的应用以及与面向物联网的云平台的集成仍未得到充分探索。本文提出了一种用于地震检测、定位和事件通知的完整物联网架构。该架构已在标准云平台上进行设计、部署和测试,通过直接在物联网设备上实现P波“拾取”引入了一种创新方法,这与传统的区域地震早期预警(EEW)方法不同。拾取关联、震源定位、事件声明和用户通知功能也部署在云端。云集成简化了架构中其他服务的集成,如数据存储和设备管理。此外,还提出了一种基于双曲线方法的定位算法,但在此处应用了常用于无线传感器网络应用的到达时间差多边测量法。结果表明,所提出的端到端架构能够在地震早期预警系统场景中以可接受的误差快速估计地震震中位置。针对意大利区域地震早期预警参考标准进行的严格测试表明,系统定位速度总体提高了3.39秒,从而为所提出的作为地震早期预警解决方案的系统的效率和潜力提供了一个切实的衡量标准。