Об определении силы светового давления на солнечный парус с учетом зависимости оптических характеристик материала паруса от механических напряжений - page 17

REFERENCES
[1] Raykunov G.G., Komkov V.A., Mel’nikov V.M., Kharlov B.N. Tsentrobezhnye
beskarkasnye krupnogabaritnye kosmicheskie konstruktsii [Centrifugal frameless
large space structures]. Moscow, ANO “Fizmatlit” Publ., 2009. 448 p.
[2] Experiment
“Znamya-3”.
Koordinatsionnyy nauchno-tekhnicheskiy sovet
po programmam nauchno-prikladnykh issledovaniy na pilotiruemykh
kosmicheskikh apparatakh
[Coordinating Scientific and Technical Council
on Applied Research Programs for the Manned Spacecraft]. Available at:
(accessed: 17.12.2013)
(in Russ.).
[3] Experiment “Znamya-SB”.
Koordinatsionnyy nauchno-tekhnicheskiy sovet
po programmam nauchno-prikladnykh issledovaniy na pilotiruemykh
kosmicheskikh apparatakh
[Coordinating Scientific and Technical Council
on Applied Research Programs for the Manned Spacecraft]. Available at:
(accessed: 17.12.2013)
(in Russ.).
[4] Kawaguchi J. An Overview of Solar Sail Related Activities at JAXA. Part I. Flight
Programs (pp. 3-14). In Book (eBook): Advances in Solar Sailing. Ed. Macdonald
M. Heidelberg, New York, Dordrecht, London, Springer, XIII, 2014. 987 p. DOI
10.1007/978-3-642-34907-2
[5] Alhorn D., Casas J., Agasid E., Adams C., Laue G., Kitts C.,
O’Brien S. NanoSail-D: The Small Satellite That Could!
Proc. AIAA/USU
Conf. on Small Satellites
, Logan, UT, United States, 2011. Available at:
(accessed 17.12.2013).
[6] Katan C. NASA’s Next Solar Sail: Lessons Learned from NanoSail - D2.
Proc. 26th Annual AIAA/USU Conference on Small Satellites: Enhancing Global
Awareness through Small Satellites
, Logan, UT, United States, 2012. Available at:
(accessed 17.12.2013).
[7] Biddy C., Svitek T. LightSail-1 Solar Sail Design and Qualification.
Proc.
41st Aerospace Mechanisms Symposium
,
2012.
Available at:
(accessed
17.12.2013).
[8] Chafer C.M. Commercial Solar Sail Applications: Overview and Update on NASA’s
Sunjammer Mission. Part I. Flight Programs (pp.127 - 132). In Book (eBook):
Advances in Solar Sailing. Ed. Macdonald M. Heidelberg, New York, Dordrecht,
London, Springer, XIII, 2014. 987 p. DOI 10.1007/978-3-642-34907-2
[9] MacNeal R.H. The heliogyro - an interplanetary flying machine.
Tech. Rep. ARC-R-
249
, Astro Reseach Corp., March, 1967.
[10] Tsander F.A. On the using of radiation pressure for fly to interplanetary space.
Sb.
Statey “Problema poleta pri pomoshhi reaktivnyh apparatov. Mezhplanetnye polety”
[Collect. Pap. "The problem of flight using jet devices. Interplanetary flights" ed. by
L.K. Korneev]. Moscow, Oborongiz Publ., 1961. 459 p. (in Russ.).
[11] Wilkie W. K., Warren J. E., Thompson M. W., Lisman P.D., Walkemeyer P.E.,
Guerrant D.V., Lawrence D.A. The Heliogyro Reloaded.
Proc. JANNAF Interagency
Propulsion Committee Meeting
, Huntsville, AL, United States, 2011. Available at:
(accessed 17.12.2013).
[12] Blomquist R.S. Heliogyro Control. Sci. Diss. of Dr. Phylosophy in Robotics. The
Robotics Inst., Carnegie Mellon University, Pittsburgh, Pennsylvania, 2009. 141 p.
[13] Guerrant D., Lawrence D., Wilkie W.K. Dynamics and Control of the HELIOS Solar
Sail Demonstrator (IAC-12,C4,3,2,x13809).
Proc. 63rd Int. Astronautical Congress
,
Naples, Italy, 2012.
ISSN 0236-3941. Вестник МГТУ им. Н.Э. Баумана. Сер. “Машиностроение” 2014. № 3 77
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