Моделирование движения кабельной линии подводного аппарата в пакете
Blender Game Engine
ISSN 0236-3933. Вестник МГТУ им. Н.Э. Баумана. Сер. Приборостроение. 2017. № 3
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REFERENCES
[1] Klimenko T.S., Milovanov M.A., Illarionov A.V. Trenazhernyy kompleks dlya obucheniya
operatorov teleupravlyaemykh neobitaemykh podvodnykh apparatov razlichnykh tipov [Simu-
lator complex for operator training for different types of remotely operated vehicles].
Materialy
XIV Mezhdunarodnoy nauchno-tekhnicheskoy konferentsii «Sovremennye metody i sredstva
okeanologicheskikh issledovaniy» (MSOI–2015). T.
2
[Proc. XIV Int. sci.-tech. conf. “Modern
methods and resources for oceanological researches” (MSOI–2015). Vol. 2]. Moscow,
APR Publ., 2015, рp. 71–75 (in Russ.).
[2] Khanychev V.V. Trenazhernyy kompleks dlya obucheniya operatorov teleupravlyaemykh ne-
obitaemykh podvodnykh apparatov razlichnykh tipov [Simulator complex for operator training of
remotely operated vehicles].
Materialy Shestoy Vserossiyskoy nauchno-tekhnicheskoy konferentsii
«Tekhnicheskie problemy osvoeniya mirovogo okeana» (TPOMO–6)
[Proc. 6th Russ. sci.-tech. conf.
“Technical problems of World ocean reclamation” (TPOMO–6)]. Vladivostok, 2015, рp. 50–60
(in Russ.).
[3] Egorov V.I. Podvodnye buksiruemye sistemy [Underwater towed systems]. Leningrad,
Sudostroenie Publ., 1981. 304 p.
[4] Egorov S.A. Upravlenie polozheniem teleupravlyaemogo podvodnogo apparata v rezhime
sovmestnogo s nositelem dvizheniya. Dis. kand. tekhn. nauk [Positional control on remotely
operated vehicle in mode of cooperative motion with carrier. Kand. tech. sci. diss.]. Moscow,
2002. 396 p.
[5] Lukomskiy Yu.A., Chugunov V.S. Sistemy upravleniya morskimi podvizhnymi ob''ektami
[Management system for moving offshore objects]. Leningrad, Sudostroenie Publ., 1988.
271 p.
[6] Ageev M.D., Kiselev L.V., Matvienko Yu.V., et al. Avtonomnye podvodnye roboty: sistemy
i tekhnologii. [Autonomous underwater robots: Systems and technologies]. Moscow, Nauka
Publ., 2005. 298 p.
[7] Vinogradov N.I., Gutman M.L., Lev I.G., Nisnevich M.Z. Privyaznye podvodnye sistemy.
Prikladnye zadachi statiki i dinamiki [Tethered underwater system. Applied problems of sta-
tics and dynamics]. Saint-Petersburg, Saint-Petersburg University Publ., 2000. 324 p.
[8]
Shigapov R.D. Razrabotka i modelirovanie sistemy upravleniya dvizheniem podvodnogo
apparata, svyazannogo kabel'-trosom s korablem. Dis. kand. tekhn. nauk [Development and
simulation of management system for motion control of undersea vehicle connected to ship by
the tether. Kand. tech. sci. diss.]. Ul'yanovsk, 2014. 116 p.
[9] Vel'tishchev V.V. The simplified representation of flexible variable-length cable for simula-
tion of dynamics of remotely operated underwater complex.
Vestn. Mosk. Gos. Tekh. Univ.
im. N.E. Baumana, Mashinostr.
[Herald of the Bauman Moscow State Tech. Univ., Mechan.
Eng.], 2012, Spets. Vyp. «Spetsial'naya robototekhnika i mekhatronika» [Spec. iss. “Specialty
robototronics and mechatronics”], pp. 32–39 (in Russ.).
[10]
Blender project — free and open 3D creation software. Available at:
https://www.blender.org(accessed 24.10.2016).
[11]
Real-time physics simulation. Home of the open source Bullet Physics Library and phy-
sics discussion forums. Available at:
http://bulletphysics.org/wordpress(accessed 24.10.2016).
[12]
Blender artists community. Website. Available at:
http://blenderartists.org/forum(accessed 24.10.2016).