Reducing Magnetic Noise of an Unmanned Aerial Vehicle for High-Quality Magnetic Surveys

The use of light and ultralight unmanned aerial vehicles (UAVs) for magnetic data acquisition can be efficient for resolving multiple geological and engineering tasks including geological mapping, ore deposits’ prospecting, and pipelines’ monitoring. The accuracy of the aeromagnetic data acquired us...

Full description

Bibliographic Details
Main Authors: Boris Sterligov, Sergei Cherkasov
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:International Journal of Geophysics
Online Access:http://dx.doi.org/10.1155/2016/4098275
id doaj-6266f4d51d814de580e65c2dbd7ae691
record_format Article
spelling doaj-6266f4d51d814de580e65c2dbd7ae6912020-11-24T22:49:12ZengHindawi LimitedInternational Journal of Geophysics1687-885X1687-88682016-01-01201610.1155/2016/40982754098275Reducing Magnetic Noise of an Unmanned Aerial Vehicle for High-Quality Magnetic SurveysBoris Sterligov0Sergei Cherkasov1Vernadsky State Geological Museum, Russian Academy of Sciences, 11/11 Mokhovaya Street, Moscow 125009, RussiaVernadsky State Geological Museum, Russian Academy of Sciences, 11/11 Mokhovaya Street, Moscow 125009, RussiaThe use of light and ultralight unmanned aerial vehicles (UAVs) for magnetic data acquisition can be efficient for resolving multiple geological and engineering tasks including geological mapping, ore deposits’ prospecting, and pipelines’ monitoring. The accuracy of the aeromagnetic data acquired using UAV depends mainly on deviation noise of electric devices (engine, servos, etc.). The goal of this research is to develop a nonmagnetic unmanned aerial platform (NUAP) for high-quality magnetic surveys. Considering parameters of regional and local magnetic survey, a fixed-wing UAV suits geological tasks better for plain area and copter type for hills and mountains. Analysis of the experimental magnetic anomalies produced by a serial light fixed-wing UAV and subsequent magnetic and aerodynamic modeling demonstrates a capacity of NUAP with internal combustion engine carrying an atomic magnetic sensor mounted on the UAV wings to facilitate a high-quality magnetic survey.http://dx.doi.org/10.1155/2016/4098275
collection DOAJ
language English
format Article
sources DOAJ
author Boris Sterligov
Sergei Cherkasov
spellingShingle Boris Sterligov
Sergei Cherkasov
Reducing Magnetic Noise of an Unmanned Aerial Vehicle for High-Quality Magnetic Surveys
International Journal of Geophysics
author_facet Boris Sterligov
Sergei Cherkasov
author_sort Boris Sterligov
title Reducing Magnetic Noise of an Unmanned Aerial Vehicle for High-Quality Magnetic Surveys
title_short Reducing Magnetic Noise of an Unmanned Aerial Vehicle for High-Quality Magnetic Surveys
title_full Reducing Magnetic Noise of an Unmanned Aerial Vehicle for High-Quality Magnetic Surveys
title_fullStr Reducing Magnetic Noise of an Unmanned Aerial Vehicle for High-Quality Magnetic Surveys
title_full_unstemmed Reducing Magnetic Noise of an Unmanned Aerial Vehicle for High-Quality Magnetic Surveys
title_sort reducing magnetic noise of an unmanned aerial vehicle for high-quality magnetic surveys
publisher Hindawi Limited
series International Journal of Geophysics
issn 1687-885X
1687-8868
publishDate 2016-01-01
description The use of light and ultralight unmanned aerial vehicles (UAVs) for magnetic data acquisition can be efficient for resolving multiple geological and engineering tasks including geological mapping, ore deposits’ prospecting, and pipelines’ monitoring. The accuracy of the aeromagnetic data acquired using UAV depends mainly on deviation noise of electric devices (engine, servos, etc.). The goal of this research is to develop a nonmagnetic unmanned aerial platform (NUAP) for high-quality magnetic surveys. Considering parameters of regional and local magnetic survey, a fixed-wing UAV suits geological tasks better for plain area and copter type for hills and mountains. Analysis of the experimental magnetic anomalies produced by a serial light fixed-wing UAV and subsequent magnetic and aerodynamic modeling demonstrates a capacity of NUAP with internal combustion engine carrying an atomic magnetic sensor mounted on the UAV wings to facilitate a high-quality magnetic survey.
url http://dx.doi.org/10.1155/2016/4098275
work_keys_str_mv AT borissterligov reducingmagneticnoiseofanunmannedaerialvehicleforhighqualitymagneticsurveys
AT sergeicherkasov reducingmagneticnoiseofanunmannedaerialvehicleforhighqualitymagneticsurveys
_version_ 1725676864327909376