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@article{JSFU_2022_15_5_a3, author = {Georgy Ya. Shaidurov and Ekaterina A. Kokhonkova}, title = {Computational modeling of the electromagnetic field distribution of a horizontal grounded antenna in rock for {TTE} communication}, journal = {\v{Z}urnal Sibirskogo federalʹnogo universiteta. Matematika i fizika}, pages = {577--585}, publisher = {mathdoc}, volume = {15}, number = {5}, year = {2022}, language = {en}, url = {http://geodesic.mathdoc.fr/item/JSFU_2022_15_5_a3/} }
TY - JOUR AU - Georgy Ya. Shaidurov AU - Ekaterina A. Kokhonkova TI - Computational modeling of the electromagnetic field distribution of a horizontal grounded antenna in rock for TTE communication JO - Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika PY - 2022 SP - 577 EP - 585 VL - 15 IS - 5 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/JSFU_2022_15_5_a3/ LA - en ID - JSFU_2022_15_5_a3 ER -
%0 Journal Article %A Georgy Ya. Shaidurov %A Ekaterina A. Kokhonkova %T Computational modeling of the electromagnetic field distribution of a horizontal grounded antenna in rock for TTE communication %J Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika %D 2022 %P 577-585 %V 15 %N 5 %I mathdoc %U http://geodesic.mathdoc.fr/item/JSFU_2022_15_5_a3/ %G en %F JSFU_2022_15_5_a3
Georgy Ya. Shaidurov; Ekaterina A. Kokhonkova. Computational modeling of the electromagnetic field distribution of a horizontal grounded antenna in rock for TTE communication. Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika, Tome 15 (2022) no. 5, pp. 577-585. http://geodesic.mathdoc.fr/item/JSFU_2022_15_5_a3/
[1] S.M. Kamruzzaman, X. Fernando, M. aseemuddin, W. Farjow, “Reliable communication network for emergency response and disaster management in underground mines”, Smart Technologies for Emergency Response and Disaster Management, 2017, 42–48
[2] W. Farjow, K. Raahemifar, X. Fernando, “Novel wireless channels characterization model for underground mines”, Applied Mathematical Modelling, 39:19 (2015), 5997–6007 | DOI | Zbl
[3] S.C. Lin, A.A. Alshehri, P. Wang, I.F. Akyildiz, “Magnetic Induction-Based Localization in Randomly Deployed Wireless Underground Sensor Networks”, IEEE Internet of Things Journal, 4:5 (2017), 1454–1465 | DOI | MR
[4] I.F. Akyildiz, P. Wang, Z. Sun, “Realizing underwater communication through magnetic induction”, IEEE Communications Magazine, 53:11 (2015), 42–48 | DOI
[5] M. Ralchenko et al., “Coupling of Very Low Frequency Through-theearth Radio Signals to Elongated Conductors”, IEEE Transactions on Antennas and Propagation, 65:6 (2017), 3146–3153 | DOI
[6] M. Ralchenko, M. Roper, C. Samson, M. Svilans, “Coupling of very low frequency electromagnetic signals to long man-made conductors”, SEG Technical Program Expanded Abstracts 2016, 2016, 2154–2158 | DOI
[7] K. Radios, Inc – A Wholly-Owned Subsidiary of SNC, https://www.kuttaradios.com/tech.html
[8] Emergency warning system for mines “Radius-2”, (in Russian) http://radius-nvic.ru/page7059197.html
[9] M.S. Zhdanov, Geophysical electromagnetic theory and methods, Scientific world, 2012 (in Russian)
[10] A.D. Grigoriev, Methods of computational electrodynamics, Fizmatlit, 2012 (in Russian)
[11] V.I. Khomich, Receiving ferrite antennas, Ed. second, M., 1963 (in Russian)