FIELD: electrical engineering.
SUBSTANCE: power supply system contains a ground source of microwave energy (1) with an antenna (2) of radiation, an aerospace aircraft (3) of an oval shape with control and monitoring elements, which are located inside the body of the aircraft under a dielectric skin (4), on which a shell (5) made of aluminum foil, a converter (6) of microwave energy into electric current, an absorber of microwave energy and an electron energy amplifier (8), which is a composite coating consisting of a hybrid of graphene and carbon nanotubes modified with ferromagnetic nanoparticles. Microwave energy absorber (8) is deposited on a conductive layer (7) made of conductive metal sublayer and transition metal sublayer. To increase the efficiency of transmission of microwave energy with frequency of 40-75 GHz, multi-beam radiation means is used (9). Microwave energy converter (6) with microwave energy absorber (8) can be located inside the aircraft body, in this case, to create the microwave energy channel, the aircraft body (3) is equipped with radio-transparent windows (12) made of synthetic diamond, with an outer sides covered with absorbing layer made of graphene film and carbon nanotubes modified with ferromagnetic nanoparticles. The invention expands functionality of the system, allows supplying power of aerospace electrodynamic aircraft at high temperatures and exposure to radiation, and also increases reliability and efficiency of the microwave energy conversion system.
EFFECT: provision of energy to aerospace electrodynamic aircraft at high temperatures and exposure to radiation, as well as increasing reliability and efficiency of system for converting microwave energy into direct current.
6 cl, 3 dwg
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Authors
Dates
2021-04-12—Published
2020-09-15—Filed