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А.С. Коноплев, А.П. Смахтин

6

Инженерный журнал: наука и инновации

# 8·2016

Physical foundations of selecting types and parameters

for subsystems of laser wireless power transmission

system in space

©

A.S. Konoplev, A.P. Smakhtin

Moscow Aviation Institute (National Research University), Moscow, 125993, Russia

Conception of wireless power transmission (WPT) by using focused electromagnetic

beams opens principle new possibilities in terrestrial and space power engineering. One

of the most promising options of wireless power engineering is the creation of laser WPT

systems for solving a variety of space power engineering problems. Effective reception

and conversion of laser radiation into electric power needs the use of standard semicon-

ductor photovoltaic (PV) convertors, operating parameters of which correlate to the la-

ser operating parameters. The article analyzes the impact of the various types and pa-

rameters of laser transmitting and receiver subsystems into the efficiency of wireless

power transmission (WPT) systems as whole.

Keywords:

wireless power transmission, receiver-convertor, laser radiation, electric

power, photovoltaic convertor, efficiency.

REFERENCES

[1]

Tsiolkovsky K.E.

Issledovaniye mirovykh prostranstv reaktivnymi priborami

[Outer Space Investigation with Reactive Devices]. Moscow, Mashinostroenie

Publ., 1967, pp. 375.

[2]

Glaser P.E. Power From the Sun: its Future.

Science

, 1968, vol. 162, pp. 857–861.

[3]

Glezer P.

Raketnaya tekhnika i kosmonavtika — AIAA Journal, Russian edition

,

1979, vol. 17, no. 1, pp. 176–190.

[4]

Burgasov M.P., Grabin B.V., Grekhnev A.B., et al. Tsentralizovannoye

energosnabzheniye v kosmose: analiz vozmozhnostey i vybor prioritetnykh

zadach [Centralized power supply in space: an analysis of opportunities and

selection of priorities].

Trudy V Mezhdunar. soveshchaniya-seminara

“Inzhenerno-fizicheskiye problemy novoy tekhniki”

[Proceedings of the V

Intern. meeting-seminar “Engineering and physical problems of new

technology”]. Moscow, BMSTU, 1998, pp. 290–291.

[5]

Zemskov V.S., Raukhmann M.R., Shalimov V.P., et al.

Poverkhnost'.

Rentgenovskie, Sinkhrotronnye i Neitronnye Issledovaniya — The Journal of

Surface Investigation. X-ray, Synchrotron and Neutron Techniques

, 2004, no. 6,

pp. 40–45.

[6]

Kalandarishvili A.G., Kompaniets G.V., Novikov D.G., et al. Energosilovaya

ustanovka dlya pilotiruyemykh poletov na baze yadernogo reaktora s

mashinnym preobrazovatelem energii i besprovodnoy peredachi energii [Power

plant for manned missions on the basis of a nuclear reactor with machine energy

converter and wireless power transmission].

Tez. dokl. 8-y Mezhdunar. konf.

“Aviatsiya i kosmonavtika — 2009”

[Abstracts of the reports at the 8th Int. Conf.

“Aviation and Astronautics — 2009”]. Moscow, MAI-Print, 2009, pp. 173.

[7]

Soldatov V.I., Smakhtin A.P., Chuyan R.L. Novye vozmozhnosti kosmicheskoy

energetiki na osnove lazernykh sistem peredachi energii [New opportunities of

space power engineering on the basis of laser power transmission systems].

Annotirovannyy sbornik materialov “Vserossiyskaya nauchno-tekhnicheskaya

konferentsiya «Raspletinskiye chteniya — 2016”

[Annotated Coll. mat. “All-