A Linear Modeling Approach on LTGP Signals and Seismic Activity

Dimitrios Dechouniotis, A. Ifantis
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Abstract

This study illustrates presents a set of the Long-Term Geoelectric Potential (LTGP) measurements that are collected for experimental investigation in Western Greece during a five-year period (1993-1997). During this period, many major destructive earthquake events occurred that caused human casualties and extended material damages. The collection and processing of geoelectric measurements was done by an automated data acquisition system at the Seismological Laboratory of the University of Patras, Greece. This novel study considers seismic activity of this area as a typical linear dynamic system and the dynamic relationship between the magnitude of earthquakes and Long-Term Geoelectric Potential signals is inferred by the Recursive Least Square algorithm. The results are encouraging and show that linear dynamic systems, which are widely used in modern control theory, can describe efficiently the dynamic behavior of seismic activity and become a useful interpretative tool of seismic phenomenon.
LTGP信号与地震活动的线性建模方法
本研究展示了一组长期地电势(LTGP)测量数据,这些数据是在希腊西部为期五年(1993-1997)的实验调查中收集的。在此期间,发生了许多重大破坏性地震事件,造成人员伤亡和扩大的物质损失。地电测量数据的收集和处理是由希腊帕特雷大学地震学实验室的自动数据采集系统完成的。本研究将该地区的地震活动视为一个典型的线性动力系统,并采用递推最小二乘算法推导了地震震级与长期地电位信号的动态关系。结果令人鼓舞,表明在现代控制理论中广泛应用的线性动力系统能够有效地描述地震活动的动力行为,成为解释地震现象的有用工具。
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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