Mathematical modeling of fluxgate magnetic gradiometers
- Authors: Milovzorov D.G.1, Yasoveev V.K.1
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Affiliations:
- Ufa State Aviation Technical University
- Issue: Vol 53, No 4 (2017)
- Pages: 388-394
- Section: Automation Systems in Scientific Research and Industry
- URL: https://journals.rcsi.science/8756-6990/article/view/212198
- DOI: https://doi.org/10.3103/S8756699017040112
- ID: 212198
Cite item
Abstract
Issues of designing fluxgate magnetic gradiometers are considered. The areas of application of fluxgate magnetic gradiometers are determined. The structure and layout of a two-component fluxgate magnetic gradiometer are presented. It is assumed that the fluxgates are strictly coaxial in the gradiometer body. Elements of the classical approach to the mathematical modeling of the spatial arrangement of solids are considered. The bases of the gradiometer body and their transformations during spatial displacement of the gradiometer are given. The problems of mathematical modeling of gradiometers are formulated, basic mathematical models of a two-component fluxgate gradiometer are developed, and the mathematical models are analyzed. A computer experiment was performed. Difference signals from the gradiometer fluxgates for the vertical and horizontal position of the gradiometer body are shown graphically as functions of the magnitude and direction of the geomagnetic field strength vector.
About the authors
D. G. Milovzorov
Ufa State Aviation Technical University
Author for correspondence.
Email: dgmilovzorov@yandex.ru
Russian Federation, ul. Karla Marksa 12, Ufa, 450008
V. Kh. Yasoveev
Ufa State Aviation Technical University
Email: dgmilovzorov@yandex.ru
Russian Federation, ul. Karla Marksa 12, Ufa, 450008
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