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地震监测系统数字化仪的原型实现。

Prototype Implementation of a Digitizer for Earthquake Monitoring System.

作者信息

Helal Emad B, Saad Omar M, Soliman M Sami, Dousoky Gamal M, Abdelazim Ahmed, Samy Lotfy, Kanaya Haruichi, Hafez Ali G

机构信息

Department of Seismology, National Research Institute of Astronomy and Geophysics (NRIAG), Helwan 11421, Egypt.

Electrical Engineering Department, Minia University, Minia 61517, Egypt.

出版信息

Sensors (Basel). 2024 Aug 15;24(16):5287. doi: 10.3390/s24165287.

Abstract

A digitizer is considered one of the fundamental components of an earthquake monitoring system. In this paper, we design and implement a high accuracy seismic digitizer. The implemented digitizer consists of several blocks, i.e., the analog-to-digital converter (ADC), GPS receiver, and microprocessor. Three finite impulse response (FIR) filters are used to decimate the sampling rate of the input seismic data according to user needs. A graphical user interface (GUI) has been designed for enabling the user to monitor the seismic waveform in real time, and process and adjust the parameters of the acquisition unit. The system casing is designed to resist harsh conditions of the environment. The prototype can represent the three component sensors data in the standard MiniSEED format. The digitizer stream seismic data from the remote station to the main center is based on TCP/IP connection. This protocol ensures data transmission without any losses as long as the data still exist in the ring buffer. The prototype was calibrated by real field testing. The prototype digitizer is integrated with the Egyptian National Seismic Network (ENSN), where a commercial instrument is already installed. Case studies shows that, for the same event, the prototype station improves the solution of the ENSN by giving accurate timing and seismic event parameters. Field test results shows that the event arrival time and the amplitude are approximately the same between the prototype digitizer and the calibrated digitizer. Furthermore, the frequency contents are similar between the two digitizers. Therefore, the prototype digitizer captures the main seismic parameters accurately, irrespective of noise existence.

摘要

数字转换器被视为地震监测系统的基本组件之一。在本文中,我们设计并实现了一种高精度地震数字转换器。所实现的数字转换器由几个模块组成,即模数转换器(ADC)、GPS接收器和微处理器。使用三个有限脉冲响应(FIR)滤波器根据用户需求对输入地震数据的采样率进行抽取。设计了一个图形用户界面(GUI),以便用户实时监测地震波形,并处理和调整采集单元的参数。系统外壳设计用于抵抗恶劣的环境条件。该原型能够以标准MiniSEED格式表示三分量传感器数据。数字转换器从远程站到主中心的地震数据流基于TCP/IP连接。只要数据仍存在于环形缓冲区中,该协议就能确保数据传输无任何损失。通过实际现场测试对该原型进行了校准。该原型数字转换器与埃及国家地震台网(ENSN)集成,ENSN中已安装了商用仪器。案例研究表明,对于同一事件,原型台站通过提供准确的时间和地震事件参数改进了ENSN的解决方案。现场测试结果表明,原型数字转换器和校准后的数字转换器之间的事件到达时间和振幅大致相同。此外,两个数字转换器的频率成分相似。因此,无论是否存在噪声,原型数字转换器都能准确捕获主要地震参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f76c/11359395/77b9eb2439d4/sensors-24-05287-g001.jpg

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