И.А. Соболев, В.В. Леонов, Т.В. Волкова, П.М. Бечаснов
18
Инженерный журнал: наука и инновации
# 4·2017
[8]
Cheberko I. Roskosmos sokratit zatraty na obsluzhivanie MKS [Roskosmos will
reduce the ISS maintenance expenditures].
Izvestia. January 11, 2016.
Available
at:
http://izvestia.ru/news/600977(accessed December 08, 2016).
[9]
Geoperekhodnaya orbita
[Geostationary transfer orbit]. Available at:
http://rusrocket.narod.ru/gto.html(accessed December 01, 2016).
[10]
Kennedy K.J. Inflatable habitats technology development.
NASA Johnson Space
Center
, 2000. Available at:
http://ntrs.nasa.gov/archive/nasa/casi.ntrs.nasa.gov/20050182969_2005179269.pdf (accessed December 12, 2016).
[11]
Messerschmid E., Reinhold B.
Space Stations. Systems and Utilization
. Springer
Publ., Berlin, 1999, 566 p.
[12]
Panasuk M.I.
Model kosmosa
[Space model]. Moscow, Research Institute of
Nuclear Physics, MGU Publ., 2007, 873 p.
[13]
Shamsutdinov S. Otryadu kosmonavtov RKK “Energia” 40 let [The
Cosmonauts' squad of the S.P. Korolev Rocket and Space Corporation Energia
is 40 years old].
Novosti kosmonavtiki — Space Exploration News
, 2006, no. 7
(282). Available at:
http://novosti-kosmonavtiki.ru/mag/2006/1031/23901/[14]
Leach N.
Space Architecture: The New Frontier for Design Research
. John
Wiley & Sons Inc. Publ., 2014, 137 p.
[15]
Norris G
.
SpaceX Unveils ‘Step Change’ Dragon ‘V2’.
AviationWeek.comMay
30, 2014
. Available at:
http://aviationweek.com/space/spacex-unveils-step-change-dragon-v2 (accessed December 09, 2016).
[16]
Coppinger R
.
Airbus' Adeline Project Aims to Build Reusable Rockets and
Space Tugs.
Space.comAvailable at:
http://www.space.com/29620-airbus-adeline-reusable-rocket-space-tug.html (accessed December 10, 2015).
[17]
Adams R.B., Alexander R., Chapman J., Fincher S., Hopkins R., Philips A.,
Polsgrove T., Litchford R., Patton B., Statham G., White S., Thio Y.C.F.
Conceptual Design of In-Space Vehicles for Human Exploration of the Outer
Planets
. Marshall Space Flight Center, 2003. Nov. 03. NASA TP-2003-212691.
[18]
Pugachenko S.E.
Proektirovanie orbitalnykh stantsiy
[Design of orbital
stations]. Moscow, BMSTU Publ., 2009, 92 p.
[19]
BEAM
Facts,
Figures,
FAQs.
NASA.
Available
at:
https://www.nasa.gov/feature/beam-facts-figures-faqs(accessed December 11,
2015).
[20]
Keeper G., Soylemez E. Deployable space structures. Conference Paper July
2009 with 61 Reads.
IEEE Xplore Conference: Recent Advances in Space
Technologies
, 2009, pp. 131–138. DOI: 10.1109/RAST.2009.5158183
[21]
Raykunov G.G., Komkov V.A., Melnikov V.M., Kharlov B.N.
Tsentrobezhnye
beskarkasnye krupnogabaritnye kosmicheskie konstruktsii
[Centrifugal
frameless large-sized space structures]. Moscow, Fizmatlit Publ., 2009, 448 p.
[22]
Scarborough S.E., Cadogan D.P. Applications of Inflatable Rigidizable
Structures.
SAMPE Symposium
,
Long Beach California
, 2006, vol. 51, pp. 1–15.
[23]
Reznik S.V., Polezhaev Yu.V.
Materialy i pokrytiya v ekstremalnykh usloviyakh.
Vzglyad v budushchee
[Materials and coatings under extreme conditions. A look
into the future]. Moscow, BMSTU Publ., 2002.
[24]
BEAM: The Experimental Platform
.
Bigelow aerospace
Available at:
http://bigelowaerospace.com/beam/(accessed December 12, 2016).
[25]
Lai C.Y., You Z., Pellegrino S.
Shape and Stress Analysis of Symmetric
Collapsible
Rib-Tensioned
Surface
Reflectors.
Available
at:
http://www.its.caltech.edu/~sslab/PUBLICATIONS/Shape%20and%20stress%20analysis%20of%20symmetric%20CRTS%20reflectors_1997.pdf
(accessed
December 14, 2016).