Underground Localization in 3−D Using Magneto−Inductive Tracking

Localization of mobile devices underground is extremely challenging, with radio propagation (such as used in GPS and VHF) severely attenuated by soil and moisture. However, low frequency magnetic fields are able to penetrate the ground with minimal loss. Mobile underground tracking devices record ma...

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Main Authors: Markham, A, Trigoni, N
Format: Journal article
Published: 2012
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author Markham, A
Trigoni, N
author_facet Markham, A
Trigoni, N
author_sort Markham, A
collection OXFORD
description Localization of mobile devices underground is extremely challenging, with radio propagation (such as used in GPS and VHF) severely attenuated by soil and moisture. However, low frequency magnetic fields are able to penetrate the ground with minimal loss. Mobile underground tracking devices record magnetic field strengths generated by an array of transmitting coils placed above the area of interest. This information is stored in flash memory, for opportunistic upload over a conventional radio link when the device is above ground. As a particular application of this technology, the underground movements of wild European badgers (Meles meles) were tracked in 3-D within their burrow systems, by equipping them with lightweight tracking collars. Typical localization accuracy is 0.45 m RMS over a 15 m × 15 m area and collar lifetime is of the order of 9 months from a 1.4 Ah lithium cell.
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spelling oxford-uuid:2d49fae7-a263-4b95-8f79-b8f352f2ab072022-03-26T12:41:58ZUnderground Localization in 3−D Using Magneto−Inductive TrackingJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:2d49fae7-a263-4b95-8f79-b8f352f2ab07Department of Computer Science2012Markham, ATrigoni, NLocalization of mobile devices underground is extremely challenging, with radio propagation (such as used in GPS and VHF) severely attenuated by soil and moisture. However, low frequency magnetic fields are able to penetrate the ground with minimal loss. Mobile underground tracking devices record magnetic field strengths generated by an array of transmitting coils placed above the area of interest. This information is stored in flash memory, for opportunistic upload over a conventional radio link when the device is above ground. As a particular application of this technology, the underground movements of wild European badgers (Meles meles) were tracked in 3-D within their burrow systems, by equipping them with lightweight tracking collars. Typical localization accuracy is 0.45 m RMS over a 15 m × 15 m area and collar lifetime is of the order of 9 months from a 1.4 Ah lithium cell.
spellingShingle Markham, A
Trigoni, N
Underground Localization in 3−D Using Magneto−Inductive Tracking
title Underground Localization in 3−D Using Magneto−Inductive Tracking
title_full Underground Localization in 3−D Using Magneto−Inductive Tracking
title_fullStr Underground Localization in 3−D Using Magneto−Inductive Tracking
title_full_unstemmed Underground Localization in 3−D Using Magneto−Inductive Tracking
title_short Underground Localization in 3−D Using Magneto−Inductive Tracking
title_sort underground localization in 3 d using magneto inductive tracking
work_keys_str_mv AT markhama undergroundlocalizationin3dusingmagnetoinductivetracking
AT trigonin undergroundlocalizationin3dusingmagnetoinductivetracking