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Published in: Measurement Techniques 5/2016

23-08-2016

Magnetometer Measurement System for the Parameters of the Geomagnetic Field

Authors: A. I. Zaiko, A. V. Vorob’ev, G. A. Ivanova, G. R. Shakirova

Published in: Measurement Techniques | Issue 5/2016

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Abstract

The design fundamentals and test results for a magnetometer system developed for monitoring and analyzing the parameters of the geomagnetic field and its variations are discussed. A wireless data transmission channel and software for real-time automatic data processing are implemented.

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Literature
2.
go back to reference A. V. Vorobev and G. R. Shakirova, “Pseudostorm effect: computer modelling, calculation, and experimental analysis,” Proc. 14th SGEM GeoConf. on Informatics, Geoinformatics, and Remote Sensing, Albena, Bulgaria (2014), Vol. 1, pp. 745–751. A. V. Vorobev and G. R. Shakirova, “Pseudostorm effect: computer modelling, calculation, and experimental analysis,” Proc. 14th SGEM GeoConf. on Informatics, Geoinformatics, and Remote Sensing, Albena, Bulgaria (2014), Vol. 1, pp. 745–751.
3.
go back to reference M. I. Pudovkin, Perturbations in the Earth’s Magnetic Field. Pt. 1, M. I. Pudovkin, O. M. Raspopov, and N. G. Kleimenova (eds.), Izd. Leningrad. Univ. (1975). M. I. Pudovkin, Perturbations in the Earth’s Magnetic Field. Pt. 1, M. I. Pudovkin, O. M. Raspopov, and N. G. Kleimenova (eds.), Izd. Leningrad. Univ. (1975).
4.
go back to reference E. A. Ponamorev, Electric Field Generation in the Earth’s Magnetosphere Owing to Processes in the Bow Shock, E. A. Ponamorev and P. A. Sedykh (eds.), Issledovano v Rossii (2004), No. 3, pp. 3–13. E. A. Ponamorev, Electric Field Generation in the Earth’s Magnetosphere Owing to Processes in the Bow Shock, E. A. Ponamorev and P. A. Sedykh (eds.), Issledovano v Rossii (2004), No. 3, pp. 3–13.
5.
go back to reference A. Egeland, O. Holter, and A. Limholt, Cosmic Geophysics [Russian translation], Mir, Moscow (1976). A. Egeland, O. Holter, and A. Limholt, Cosmic Geophysics [Russian translation], Mir, Moscow (1976).
6.
go back to reference A. V. Vorob’ev, “Study and analysis of the amplitude-frequency characteristics of a geomagnetic pseudostorm during flight of different kinds of aircraft,” Vest. UGATU, 18, No. 3 (64), 132–141 (2014). A. V. Vorob’ev, “Study and analysis of the amplitude-frequency characteristics of a geomagnetic pseudostorm during flight of different kinds of aircraft,” Vest. UGATU, 18, No. 3 (64), 132–141 (2014).
8.
go back to reference S. A. Nikitin, “Gigantic magnetoresistance,” Soros. Obrazov. Zh., 8, No. 2, 92–98 (2004). S. A. Nikitin, “Gigantic magnetoresistance,” Soros. Obrazov. Zh., 8, No. 2, 92–98 (2004).
9.
go back to reference S. G. Guzhin, V. I. Zhulev, and S. V. Nikitin, “Sensors base on new magnetoresistance effects,” Datch. Sistemy, No. 9, 54–59 (2008). S. G. Guzhin, V. I. Zhulev, and S. V. Nikitin, “Sensors base on new magnetoresistance effects,” Datch. Sistemy, No. 9, 54–59 (2008).
10.
go back to reference M. G. Lukashevich, Introduction to Magnetoelectronics, BGU, Minsk (2003). M. G. Lukashevich, Introduction to Magnetoelectronics, BGU, Minsk (2003).
11.
go back to reference P. Ripka and A. Tipek, Modern Sensors, ISTE ltd., London (2007). P. Ripka and A. Tipek, Modern Sensors, ISTE ltd., London (2007).
12.
go back to reference A. V. Vorob’ev, “Synthesis and verification of a mathematical model for an anisotropic magnetoresistance bridge sensor,” Datch. Sistemy, No. 5, 40–45 (2012). A. V. Vorob’ev, “Synthesis and verification of a mathematical model for an anisotropic magnetoresistance bridge sensor,” Datch. Sistemy, No. 5, 40–45 (2012).
13.
go back to reference A. V. Vorob’ev, “Mathematical model of an anisotropic magnetoresistance sensor for engineering calculations,” Vest. UGATU, 16, No. 1 (46), 161–166 (2012). A. V. Vorob’ev, “Mathematical model of an anisotropic magnetoresistance sensor for engineering calculations,” Vest. UGATU, 16, No. 1 (46), 161–166 (2012).
Metadata
Title
Magnetometer Measurement System for the Parameters of the Geomagnetic Field
Authors
A. I. Zaiko
A. V. Vorob’ev
G. A. Ivanova
G. R. Shakirova
Publication date
23-08-2016
Publisher
Springer US
Published in
Measurement Techniques / Issue 5/2016
Print ISSN: 0543-1972
Electronic ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-016-1003-4

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