Design of real time sensor system for detection and processing of seismic waves for earthquake early warning system

Yogesh Sherki, Nikhil Gaikwad, J. Chandle, A. Kulkarni
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引用次数: 11

Abstract

Earthquake is one of the major natural calamity. So prediction of the reach of earthquake event to the various locations could result in minimizing the disaster due to it. An early warning system for earthquake mainly issues an alarm to have a time margin for evacuating peoples to the safe place or shutting down key facilities like major industrial work etc. to avoid major consequences [1]. This paper contains the design of sensor system and the techniques used for detection and processing of the received signals in real time. The main difference between our method and conventional methods of earthquake location tracking is addition of two planer Azimuth angle. Conventionally the distance triangulation method is used for tracking the earthquake location. But this method is not much accurate since it considers the average speeds of the P and S waves. Speed of seismic waves varies immensely depending upon type of soil, rocks or water etc. below the earth surface. The addition of using the two planer Azimuth angle gives 3-dimensional angle of incoming seismic waves at the sensor system. So using two planer Azimuth angle along with distance triangulation method we can track location of earthquake more accurately by using at least three sensors data.
地震预警系统中地震波检测与处理实时传感器系统的设计
地震是重大的自然灾害之一。因此,预测地震事件对各个地点的影响范围,可以最大限度地减少地震造成的灾害。地震预警系统主要是发出警报,以便在一定时间内疏散人员到安全地点,或关闭主要工业厂房等关键设施,以避免造成重大后果。本文介绍了传感器系统的设计以及对接收到的信号进行实时检测和处理的技术。该方法与传统的地震定位跟踪方法的主要区别在于增加了两个平面方位角。传统上采用距离三角法进行地震定位。但这种方法考虑的是纵波和横波的平均速度,因此不太准确。地震波的速度根据地表以下的土壤、岩石或水等的类型而有很大的不同。利用两平面方位角的叠加,得到了传感器系统入射地震波的三维角度。因此,利用两平面方位角和距离三角测量法,可以利用至少三个传感器的数据更准确地跟踪地震的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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