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Problem Solving Methods for Ensuring Safety of Unmanned Aerial Vehicles

Authors: Elokhin A.P., Gritskevich N.A., Vasilenko A.A. Published: 03.08.2018
Published in issue: #4(121)/2018  
DOI: 10.18698/0236-3933-2018-4-15-31

 
Category: Instrument Engineering, Metrology, Information-Measuring Instruments and Systems | Chapter: Navigation Instruments  
Keywords: unmanned aerial vehicle, electromagnetic transmitter, radiation pattern, electromagnetic field detector, inductance, capacitance, oscillatory circuit, resonant frequency

The paper focuses on a problem solving method for ensuring the safe flight of unmanned aerial vehicles (UAV) carrying a tool set applied for a number of scientific studies. In order to prevent collisions between carriers, every UAV is equipped with an electromagnetic transmitter with the radiation pattern of 4π and a detector for its identification. This equipment with embedded specialized software is expected to prevent crash situations

References

[1] Elokhin A.P. Ob effektivnosti ispolzovaniya aviatsionno-raketnogo kompleksa dlya operativnogo monitoringa krupnomasshtabnykh ekologicheskikh katastrof. Aviakosmicheskoe priborostroenie [Aerospace Instrument–Making], 2004, no. 7, pp. 52–63 (in Russ.).

[2] Elokhin A.P. Metody i sredstva sistem radiatsionnogo kontrolya okruzhayushchey sredy [Methods and tools for environmental radiation monitoring]. Moscow, NIYaU MEPhI Publ., 2014. 520 p.

[3] Elokhin A.P., Rau D.F., Parkhoma P.A. Sposob distantsionnogo opredeleniya kontsentratsii radionuklidov v vozdushnom vybrose radiatsionno-opasnykh predpriyatiy i ustroystvo ego osushchestvleniya [The method of remote activity concentration determination in emissions from radiation hazardous facilities and a tool to perform it]. Patent RF 2299451. 2006. Appl. 06.07.2006, publ. 20.05.2007.

[4] Elokhin A.P., Gritskevich N.A. On the issue of UAV movement control equipment to prevent the carriers from collision. Mezhd. konf. PGU «Problemy avtomatizatsii i upravleniya v tekhnicheskikh sistemakh». T. 1 [Int. Conf. PSU "Challenges of automatics and control of technical systems". Vol. 1]. Penza, PSU Publ., 2015. Pp. 33–41.

[5] Elokhin A.P., Zhilina M.V., Rau D.F., Parkhoma P.A. Sposob distantsionnogo izmereniya zagryazneniya radionuklidami podstilayushchey poverkhnosti v slede radioaktivnogo vybrosa radiatsionno-opasnykh predpriyatiy i sistema dlya ego osushchestvleniya [The method of remote activity concentration determination on underlying surfaces in traces of radioactive emissions from radiation hazardous facilities, and a system to perform it]. Patent RF 2388018. Appl. 26.06.2009, publ. 27.04.2010.

[6] Elokhin A.P., Zhilina M.V., Parkhoma P.A. Particulars of scanning an underlying surface using a pilotless dosimetric complex. Atomic Energy, 2009, vol. 107, no. 2, pp. 130–143. DOI: 10.1007/s10512-009-9207-1

[7] Katastrofy rossiyskikh voennykh samoletov v 2006–2012 gg. [Russian warcraft crashes in 2006–2012]. RIA Novosti: website. (in Russ.).Available at: http://ria.ru/spravka/20121012/772846765.html#ixzz2nXtNnhBG (accessed: 07.03.2018).

[8] Markov G.T., Petrov B.M., Grudinskaya G.P. Elektrodinamika i rasprostranenie radiovoln [Electrodynamics and radiowaves distribution]. Moscow, Sovetskoe radio Publ., 1979. 374 p.

[9] Yurikov P.A. Kak rabotaet elektricheskaya izolyatsiya [How electrical insulation work]. Moscow, Energiya Publ., 1972. 80 p.

[10] Belkhouche F. Modeling and calculating the collision risk for air vehicles. IEEE Transactions on Vehicular Technology, 2013, vol. 62, no. 5, pp. 2031–2041. DOI: 10.1109/TVT.2013.2238265