Amplitude response of a telemetered seismic system from seismometers to digital acquisition system

Automated amplitude response of the complete seismometer, telemetry and recording system js obtaiued trom sinusoidal inputs to the calibration coil. Custom-built software was designed to perform fully automatic cali- bration analyses of the digital signals. In this paper we describe the signals used...

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Main Authors: A. Marchetti, S. Barba, R. Di Giovambattista
Format: Article
Language:English
Published: Istituto Nazionale di Geofisica e Vulcanologia (INGV) 1995-06-01
Series:Annals of Geophysics
Subjects:
Online Access:http://www.annalsofgeophysics.eu/index.php/annals/article/view/4128
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spelling doaj-aa702044288d41c69bbcee18ccc098ea2020-11-25T01:00:54ZengIstituto Nazionale di Geofisica e Vulcanologia (INGV)Annals of Geophysics1593-52132037-416X1995-06-0138110.4401/ag-4128Amplitude response of a telemetered seismic system from seismometers to digital acquisition systemA. MarchettiS. BarbaR. Di GiovambattistaAutomated amplitude response of the complete seismometer, telemetry and recording system js obtaiued trom sinusoidal inputs to the calibration coil. Custom-built software was designed to perform fully automatic cali- bration analyses of the digital signals. In this paper we describe the signals used for calibration and interactive and batch procedures designed to obtain calibration functions in automatic mode. By using a steady-state method we reach a high degree of accuracy in the determination of both the frequency and amplitude of the ignal. The only parameters required by this procedure are the seismometer mass, the calibration-coil constant and the intensity of the current injected into the calibration coil. This procedure is applicable to telemetered seismic systems and represents an optimization of the processing time. The software was designed to requjre no modification" jf the device used to generate the sinusoidal current should change. In particular, it is possi- ble to changc the number of monotrequcncy packages transmitted to the calibration coil with the on]y restric- tion that the difference between the frequency of two consecutjve packages be greater than 5%; for these rea- sons the procedure is expected to be usefu] for the seismological community. The paper inc]udes a generaI de- scription of thc designing criteria, and of the hardware and software architecture, as well as an account of thc system's performancc during a two year period of operation.http://www.annalsofgeophysics.eu/index.php/annals/article/view/4128transfer functionseismic networkcalibration method
collection DOAJ
language English
format Article
sources DOAJ
author A. Marchetti
S. Barba
R. Di Giovambattista
spellingShingle A. Marchetti
S. Barba
R. Di Giovambattista
Amplitude response of a telemetered seismic system from seismometers to digital acquisition system
Annals of Geophysics
transfer function
seismic network
calibration method
author_facet A. Marchetti
S. Barba
R. Di Giovambattista
author_sort A. Marchetti
title Amplitude response of a telemetered seismic system from seismometers to digital acquisition system
title_short Amplitude response of a telemetered seismic system from seismometers to digital acquisition system
title_full Amplitude response of a telemetered seismic system from seismometers to digital acquisition system
title_fullStr Amplitude response of a telemetered seismic system from seismometers to digital acquisition system
title_full_unstemmed Amplitude response of a telemetered seismic system from seismometers to digital acquisition system
title_sort amplitude response of a telemetered seismic system from seismometers to digital acquisition system
publisher Istituto Nazionale di Geofisica e Vulcanologia (INGV)
series Annals of Geophysics
issn 1593-5213
2037-416X
publishDate 1995-06-01
description Automated amplitude response of the complete seismometer, telemetry and recording system js obtaiued trom sinusoidal inputs to the calibration coil. Custom-built software was designed to perform fully automatic cali- bration analyses of the digital signals. In this paper we describe the signals used for calibration and interactive and batch procedures designed to obtain calibration functions in automatic mode. By using a steady-state method we reach a high degree of accuracy in the determination of both the frequency and amplitude of the ignal. The only parameters required by this procedure are the seismometer mass, the calibration-coil constant and the intensity of the current injected into the calibration coil. This procedure is applicable to telemetered seismic systems and represents an optimization of the processing time. The software was designed to requjre no modification" jf the device used to generate the sinusoidal current should change. In particular, it is possi- ble to changc the number of monotrequcncy packages transmitted to the calibration coil with the on]y restric- tion that the difference between the frequency of two consecutjve packages be greater than 5%; for these rea- sons the procedure is expected to be usefu] for the seismological community. The paper inc]udes a generaI de- scription of thc designing criteria, and of the hardware and software architecture, as well as an account of thc system's performancc during a two year period of operation.
topic transfer function
seismic network
calibration method
url http://www.annalsofgeophysics.eu/index.php/annals/article/view/4128
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