METHOD AND DEVICE FOR ELECTRICAL ENERGY TRANSMISSION (VERSIONS) Russian patent published in 2016 - IPC H02J3/00 

Abstract RU 2572360 C2

FIELD: electricity.

SUBSTANCE: in suggested method and device electric energy transmission is carried out from resonant circuit of low-voltage winding in step-up high-frequency resonant transformer set to frequency of high-frequency generator to resonant circuit of low-voltage winding in step-down high-frequency resonant transformer through a single-wire line notwithstanding from the ground by placement of low-voltage windings of step-up and step-down high-frequency resonant transformers in the middle of high-voltage high-frequency resonant windings and current conversion in the single-wire line to active current in load. According to the other version of the suggested method and device electric energy transmission is carried out through two push-pull single-wire lines isolated from the ground by conversion of current in the single-wire lines isolated from the ground to alternating current of commercial frequency. The method and device for electric energy transmission is also implemented by generation of high-frequency resonance oscillation in the circuit with natural capacity of conducting spheres coupled to outermost outputs of single-layer windings in resonant transformers through a singe-wire line notwithstanding the ground. Another method and device for electric energy transfer is implemented by generation of high-frequency resonance oscillation, at that in the circuit electric oscillations are generated in the transmitting resonant transformer with electrocoduncting spheres used as electric capacitances coupled to its outputs, through two push-pull single-wire lines isolated from the ground, current is converted in the single-wire lines isolated from the ground to alternating current of commercial frequency.

EFFECT: reduced electric losses.

8 cl, 4 dwg

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RU 2 572 360 C2

Authors

Trubnikov Vladimir Zakharovich

Strebkov Dmitrij Semenovich

Nekrasov Aleksej Iosifovich

Dates

2016-01-10Published

2013-10-18Filed