DOI 10.17586/0021-3454-2018-61-8-692-700
UDC 629.78
MULTI-PURPOSE BLOCK-MODULAR TYPE PLATFORM “SYNERGY” FOR NANOSATELLITES ASSEMBLING
JSC Laboratory "Astronomikon"; CEO
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Abstract. Methods of design and employment of nanosatellites are described. A review of the CubeSat standard is presented. Technology of construction of nanosatellites on the base of multi-purpose platform "Synergy" of block-modular type is considered.
Keywords: small spacecraft, nanosatellite, picosatellite, platform, CubeSat
References:
References:
- http://www.cnews.ru/reviews/index.shtml?2014/07/03/ 578020.
- http://www.astronomikon.ru/.
- http://www.cubesat.ru/ru/cubesats.html.
- http://www.nanosats.eu/.
- http://www.spacecorp.ru/ directions/nano/function/.
- http://www.amsat.org.
- http://www.tsniimash.ru/.
- http://www.dauria.ru/platformi/mka-h.
- http://www.sputnix.ru/ru/analytics/item/296-ot-mnogosputnikovykh-sistem-k-sistemnym-sputnikam.
- http://www.ecoruspace.me/SamSat-218.html.
- http://www.cnews.ru/top/2014/03/14/rynok_nanosputnikov_vyrastet_v_27_raza_k_2019_g_564420.
- http://www.darpa.mil/Our_Work/TTO/Programs/System_F6.aspx.
- https://www.directory.eoportal.org/web/eoportal/satellite-missions/c-missions/colony-1.
- https://www.qb50.eu/.
- http://www.planet.com/pulse/planet-launches-satellite-constellation-to-image-the-whole-planet-daily/.
- http://www.press.scanex.ru/index.php/ru/news/item/4288-launches_2013.
- http://www.russia.dauria.ru/wp-content/uploads/2015/03.
- http://www.darpa.mil/program/space-enabled-effects-for-military-engagements.
- http://www.tssonline.ru/articles2/sputnik/mobiljnaya-svyazj-5g-na-baze-nanosputnikov.
- http://www.nasa.gov/news/budget.
- Klyushnikov V.Yu. Aktual'nye voprosy proektirovaniya avtomaticheskikh kosmicheskikh apparatov dlya fundamental'nykh i prikladnykh nauchnykh issledovaniy (Topical Issues of Design of Automatic Spacecrafts for Basic and Applied Scientific Research), Khimki, Scientific and production associationof S.A. Lavochkin, 2015, рр. 134–146. (in Russ.)
- Klyushnikov V.Yu., Klement'ev S.A. Innovatics and Expert Examination, 2016, no. 2(16), pp. 97–105. (in Russ.)
- Ivanitskaya V.V. Aktual'nye problemy aviatsii i kosmonavtiki, 2015, no. 2, pp. 300–302. (in Russ.)
- Kashirin A.V., Glebanova I.I. Molodoy uchenyy (Young Scientist), 2016, no. 7(111), pp. 855–867. ISSN 2072-0297. (in Russ.)
- http://www.cubesat.org/resources/.
- Fateev V.F., ed., Infrastruktura malykh kosmicheskikh apparatov (The Infrastructure of Small Satellites), Moscow, 2011. (in Russ.)
- Fateev V.F., ed., Malye kosmicheskie apparaty informatsionnogo obespecheniya (Small Spacecrafts of Information Support), Moscow, 2010. (in Russ.)
- http://www.cta.ru/cms/f/437023.pdf.
- http://www.csmonolit.ru/netcat_files/19/136/h_da6fb5fa76d77e0da465542e5a2b2926.
- http://www.ssau.ru/files/science/conferences/vsudnla2016/2p63-67.pdf.
- http://www.cyberleninka.ru/article/n/analiz-vliyaniya-proektno-ballisticheskih-parametrovnanosputnika-na-uglovoe-dvizhenie-pri-snizhenii-s-nizkih-krugovyh-orbit.
- http://www.naukarus.com/sistema-orientatsii-pervogo-rossiyskogo-nanosputnika-tns-0-1.
- Belokonov I.V., Timbay A.I., Nikolaev P.N. 24th Saint Petersburg International Conference on Integrated Navigation Systems, St. Petersburg, 2017, рр. 376–394. (in Russ.)
- Zuev D.M., Pyatkov A.G., Movchan P.V., Smirnov D.V., Kostyukov A.S. Vestnik SibGAU, 2014, no. 4(56), pp. 160–166. (in Russ.)
- http://www.news.tpu.ru/news/2016/02/02/24769/.
- Malygin D.V. Reshetnevskie chteniya-2011, XV International Scientific Conference, Krasnoyarsk. 10–12 November 2011, рр. 377–378. (in Russ.)
- https://en.wikipedia.org/wiki/SpaceWire.
- http://www.keldysh.ru/papers/2015/prep2015_32.pdf.
- Malygin D.V. Kosmicheskoe priborostroenie (Space Instrument Making), Proceedings of the Forum of Postgraduate Students and Young Scientists with International Participation, Tomsk, 2013, рр. 41–44. (in Russ.)