Layout for automated software-hardware complex for geophysical signal on-line monitoring, identification and analysis
Vestnik KRAUNC. Fiziko-matematičeskie nauki, no. 4 (2018), pp. 213-225 Cet article a éte moissonné depuis la source Math-Net.Ru

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Methods and technical tools for complex analysis of geoacoustic and electromagnetic emissions signals have been developed to estimate automatically the state of the system «Earth surface layer—atmosphere lower layers» during the periods preceding hazardous seismic events. The investigation is a topical and one of the most important scientific directions, that is development of the theory of natural disaster mechanism modeling based on the consideration of the effects of a specified set of different physical factors. Technological processes which provide the detection, processing and analysis of geophysical signals from the near-surface lithosphere-atmosphere system of the Earth are described for the periods of background and anomalous activity in Kamchatka.
Mots-clés : geoacoustic
Keywords: VLF radiation, registration system, hardware-software complex.
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     title = {Layout for automated software-hardware complex for geophysical signal on-line monitoring, identification and analysis},
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I. A. Larionov; E. I. Malkin; Yu. V. Marapulets; M. A. Mishenko; A. A. Solodchuk. Layout for automated software-hardware complex for geophysical signal on-line monitoring, identification and analysis. Vestnik KRAUNC. Fiziko-matematičeskie nauki, no. 4 (2018), pp. 213-225. http://geodesic.mathdoc.fr/item/VKAM_2018_4_a21/

[1] Adushkin V. V., Spivak A. A, “Near-surface geophysics: Complex investigations of the lithosphere-atmosphere interactions”, Physics of the Solid Earth, 48:3 (2012), 181-198

[2] Gohberg B.M., Morgunov V.A., Pohotelov O.A., Sejsmoehlektromagnitnye yavleniya, Nauka, M., 1988, 174 pp.

[3] Sadovskij M.A. et al., Elektromagnitnye predvestniki zemletryasenij, Nauka, M., 1982, 89 pp.

[4] Mori Y., Obata Y., Sikula J., “Acoustic and electromagnetic emission from crack created in rock sample under deformation”, Acoustic Emission., 27 (2009), 157–166

[5] Druzhin G. I. et al., “Acoustic and electromagnetic emissions preceding the earthquake in Kamchatka Doklady Earth Sciences”, DAN, 472:2 (2017), 215-219

[6] Kupcov A. V. et al., “Analiz izmenenij geoakusticheskoj ehmissii v processe podgotovki sil'nyh zemletryasenij na Kamchatke”, Issledovano v Rossii, 7 (2004), 2809–2818

[7] Kupcov A.V., “Izmenenie haraktera geoakusticheskoj ehmissii v svyazi s zemletryaseniem na Kamchatke”, Fizika Zemli, 2005, no. 10, 59–65

[8] Kupcov A. V., Larionov I. A., Shevcov B. M., “Osobennosti geoakusticheskoj ehmissii pri podgotovke kamchatskih zemletryasenij”, Vulkanologiya i sejsmologiya, 2005, no. 5, 45–58

[9] Marapulets Yu. V., Shcherbina A. O., “Metody issledovaniya prostranstvennoj anizotropii geoakusticheskoj ehmissii”, Tekhnicheskaya akustika, 2008, no. 8, 14

[10] Marapulets Yu. V., Shevtsov B. M., Mezomasshtabnaya akusticheskaya emissiya, Dal’nauka, Vladivostok, 2012, 126 pp.

[11] Shcherbina A. O., Izmenenie napravlennosti vysokochastotnoj geoakusticheskoj ehmissii v periody deformacionnyh vozmushchenijyu, dissertaciya na soiskanie uchenoj stepeni kandidata fiziko-matematicheskih nauk, Paratunka, 2010, 97 pp.

[12] Oleshchuk V.YU. et al., Nauchno-tekhnicheskij otchet «Issledovaniya vliyaniya sejsmicheskoj aktivnosti na shumy okeana», Akusticheskij institut im. akademika Andreeva, Tihookeanskij filial, M., 1991, 222 pp.

[13] Sasorova E. V., Levin B. V., “Nizkochastotnye sejsmicheskie signaly kak regional'nye priznaki podgotovki zemletryasenij”, Vulkanologiya i sejsmologiya, 1999, no. 4/5, 126–133

[14] Voytenko E. A., Morgunov Yu. N., “Experimental studies of the propagation of buried pulsed acoustic signals in the ground”, Acoustical Physics, 57:1 (2011), 66-67

[15] Rutenko A. N., “Monitoring the acoustic field of seismic survey pulses in the near-coastal zone”, Acoustical Physics, 58:3 (2012), 326-338

[16] Sapozhkov M. A., Elektroakustika, Svyaz', M, 1978, 272 pp.

[17] Bespalov P. A., Trahtengerc V. Yu., Voprosy teorii plazmy, v. 10, Atomizdat., M., 1980, 88 pp.

[18] Vershinin E. F., Ponomarev E. A., “0 klassifikacii nepreryvnogo UNCH izlucheniya verhnej atmosfery”, Irkutsk: SibIZMIR, Zemnoj magnetizm, polyarnye siyaniya i ul'tranizkochastotnoe izluchenie, 1 (1966), 35–43

[19] Druzhin G. I. et al., “Apparaturnyj kompleks dlya opredeleniya azimutal'nyh uglov prihoda impul'snyh ONCH-izluchenij”, Solnechno-zemnye svyazi i ehlektromagnitnye predvestniki zemletryasenij, Tezisy dokladov II Mezhdunarodnogo soveshchaniya, 2001, 32–33

[20] Druzhin G. I., Cherneva N. V., Mel'nikov L. N., “Pelengaciya grozovyh istochnikov na Kamchatke”, Vestnik KamchatGTU, 7 (2008), 14–17

[21] Druzhin G. I., Cherneva N. V., Mel'nikov L. N., “Grozovaya aktivnost' po nablyudeniyam ONCH-izlucheniya na Kamchatke”, Solnechno-zemnaya fizika, 2:12 (2008), 327–328

[22] Firstov P., Cherneva N., Akbashev R., “Natural factor impact on atmospheric electric field variations in Kamchatka”, E3S Web of Conferences, 20 (2017), 01003 | DOI

[23] Firstov P. P. Izmenenie ob"emnoj aktivnosti radona v podpochvennom gaze pered Kronockim zemletryaseniem, Kronockoe zemletryasenie na Kamchatke 5 dekabrya 1997 Predvestniki, osobennosti, posledstviya, Petropavlovsk-Kamchatskij, 1999, 177–188

[24] Pulinets S. A. et al., “Verification of the concept of seismoionospheric coupling under quiet heliogeomagnetic conditions, using the Wenchuan (China) earthquake of May 12, 2008, as an example”, Geomagnetism and Aeronomy, 50:2 (2010), 231-242

[25] Shcherbina A. O., Programma registracii akusticheskogo signala Sound Processor v.1.1, Svidetel'stvo ob otraslevoj registracii razrabotki. No9537. 27.11.2007

[26] Programma dlya vydeleniya geoakusticheskih impul'sov i vychisleniya ih napravlenij SmartPeleng v.0.7, Svidetel'stvo ob otraslevoj registracii razrabotki. No9766. 10.01.2008

[27] Fedorov S. O., Valov A. S.,Krasil'naya A. V., Programmnyj kompleks dlya cifrovoj fil'tracii signala s ispol'zovaniem parallel'nyh vychislenij “IAC” versiya 1.0, Svidetel'stvo o registracii ehlektronnogo resursa. No19790. 24.12.2013

[28] Programma dlya razryazhennoj approksimacii signalov geoakusticheskoj ehmissii s primeneniem parallel'nyh vychislenij, Svidetel'stvo o gosudarstvennoj registracii programmy dlya EHVM. No2015613613. 19.03.2015

[29] Tristanov A. B. et al., “A new approach to study of geoacoustic emission signals”, Pattern Recognition and Image Analysis, 26:1 (2016), 34–44 | DOI