Automatized system of ecological monitoring and landscape fire detection
Problemy fiziki, matematiki i tehniki, no. 4 (2019), pp. 98-101.

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Methods of landscape fire detection are examined and among them, special attention is devoted to monitoring with the help of rotary video camera placed on towers. A system of video-monitoring is suggested which secures free 360 degrees rotation of the IP-camera in horizontal plane and allows controlling the state of the forestland without “dead space”. The system allows detecting ignition with high efficiency, exercising radiation monitoring, and fixing the changes of radiation background parameters in case of forest fire beginnings.
Keywords: forest fire, radiation background, rotating video-camera, monitoring.
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A. V. Kiselyov; V. A. Goldade. Automatized system of ecological monitoring and landscape fire detection. Problemy fiziki, matematiki i tehniki, no. 4 (2019), pp. 98-101. http://geodesic.mathdoc.fr/item/PFMT_2019_4_a18/

[1] Yu.A. Ipatov, A.V. Krevetskii, V.O. Shmakin, “Proektirovanie raspredelennoi nazemnoi sistemy monitoringa za lesnymi pozharami”, Kibernetika i programmirovanie, 2013, no. 2, 20–28

[2] A.Yu. Kudrin, L.I. Zaporozhets, Yu.V. Podrezov, “Sovremennye metody obnaruzheniya i monitoringa lesnykh pozharov”, Tekhnologii grazhdanskoi bezopasnosti, 2006, 66–67

[3] M.T. Abshaev, A.M. Abshaev, M.A. Anaev, V.V. Solovev, S.I. Shagin, “Mnogotselevoi aviatsionnyi kompleks monitoringa, preduprezhdeniya i zaschity ot stikhiinykh bedstvii na baze bespilotnogo letatelnogo apparata «nart»”, Izvestiya Yuzhnogo federalnogo universiteta. Tekhnicheskie nauki, 2017, 229–238

[4] A. Khanin, R. Chebotarev, “Printsipy opticheskogo metoda avtomaticheskogo detektirovaniya lesnykh pozharov”, Algoritm bezopasnosti, 2011, no. 1, 76–80

[5] I.S. Shepeleva, “Videomonitoring — odin iz sposobov obnaruzheniya lesnykh pozharov”, Lesokhozyaistvennaya informatsiya, 2015, no. 4, 46–50

[6] O.I. Shishalov, I.S. Shishalov, O.I. Pypina, “«Lesnoi Dozor» — effektivnaya sistema rannego obnaruzheniya lesnykh pozharov”, Lesnoi byulleten, 2010, no. 1, 21–26

[7] Sistema monitoringa lesa «Lesnoi dozor», (Data dostupa: 14.03.2019) http://lesdozor.ru/ru/