FIELD: electricity.
SUBSTANCE: builder of the conducting channel is designed as electrically protected parabolic reflector of a conductive material and a cylindrical metal electrode mounted around the focal region of the parabolic reflector and connected to a Tesla transformer, the cylindrical electrode axis coincides with the focal axis of the parabolic reflector, with the conducting channel axis and with the center of the receiving screen and the voltage on the cylindrical electrode is 0.7-50 million. B at a frequency of 1-100 kHz. In another version of the device the builder of the conducting channel is designed as an electrically protected focusing parabolic reflector of a conductive material and electrically protected cylindrical metal electrode mounted around the focal region of the parabolic reflector, the diameter of the cylindrical electrode is equal to the diameter of the parabolic reflector and the cylindrical electrode axis coincides with the focal axis of the parabolic reflector and the center of the receiving screen, between the high voltage output of the transmitting Tesla transformer and the builder of the conducting channel a diode assembly of two opposite connected diode circuits with a common input connected to the high voltage output of the secondary winding of the transmitting Tesla transformer is mounted, the output of the diode circuit with a positive potential is connected to the cylindrical electrode, the voltage between the parabolic reflector and cylindrical electrode is 0.7-50 million. B. Using the method of electric power transmission, a voltage of 0.7-50 million is applied to the builder of the conducting channel. B with a resonant frequency of f0=1-100 kHz and the flow of electrons, quanta and other nuclear particles is generated in the builder of the conducting channelγ, the air molecules are ionized in the conducting channel with a diameter of 0.5-5 mm and length of 5-500 km, the electric power is transmitted by the conducting channel to the receiving escreen and the high voltage output of a step-down Tesla transformer, and transformed in voltage and frequency of the inverter and transferred to load.
EFFECT: increased efficiency and reliability of the wireless transmission of electric power.
6 cl, 2 dwg
Title | Year | Author | Number |
---|---|---|---|
METHOD AND DEVICE FOR TRANSMISSION OF ELECTRIC POWER (VERSIONS) | 2006 |
|
RU2341860C2 |
APPARATUS AND METHOD OF TRANSMITTING ELECTRICAL POWER | 2019 |
|
RU2713208C1 |
DEVICE AND METHOD OF ELECTRIC SIGNALS AMPLIFICATION (VERSIONS) | 2017 |
|
RU2644119C1 |
METHOD AND DEVICE FOR TRANSFERRING ELECTRIC ENERGY (VARIANTS) | 2004 |
|
RU2273939C1 |
RESONANT POWER AMPLIFIER AND METHOD OF STRENGTHENING ELECTRICAL OSCILLATIONS IN IT | 2017 |
|
RU2656975C1 |
POWER TRANSMISSION METHOD AND DEVICE | 1999 |
|
RU2143775C1 |
METHOD AND DEVICE FOR TRANSMISSION OF ELECTRIC POWER | 2013 |
|
RU2533060C2 |
METHOD AND DEVICE FOR ELECTRICAL ENERGY TRANSMISSION | 2000 |
|
RU2172546C1 |
METHOD AND DEVICE FOR ELECTRIC ENERGY TRANSMISSION (VERSIONS) | 2007 |
|
RU2342761C1 |
TECHNIQUE AND GEAR TO TRANSMIT ELECTRIC ENERGY | 1999 |
|
RU2161850C1 |
Authors
Dates
2017-04-03—Published
2016-02-18—Filed