Resonant wireless energy transmission device

A wireless energy transmission and resonant technology, which is applied in the direction of circuit devices, electrical components, electromagnetic wave systems, etc., can solve the problems of inapplicability of portable wireless charging products, impossibility of practical application, energy dissipation, etc., and increase the size and volume of the system , simple structure, and the effect of increasing the transmission distance

Inactive Publication Date: 2011-05-04
SOUTHEAST UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The energy transmission efficiency at a distance of twice the diameter is only about 20%, and most of the energy is dissipated in the space, which makes this scheme impractical for practical application at present
Another disadvantage of this solution is that a total of four primary and secondary coils are required, which is bulky and complex in design, and is not suitable for designing portable wireless charging products in the future.

Method used

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  • Resonant wireless energy transmission device
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Embodiment Construction

[0018] The technical scheme adopted by the non-radiative magnetic resonance series-parallel wireless energy transmission system proposed by the present invention is as follows. Two identical coils are wound with enameled wire, each of the two coils is connected with a capacitor in parallel, and then the two parallel circuits are connected in series with another capacitor, and finally the transmitting coil is connected to the high-frequency transmitting power supply, and the receiving coil is connected to the receiving load. model such as figure 2 shown.

[0019] The proposed wireless energy transfer system is characterized in that the coil, the series capacitor and the parallel capacitor form a resonant circuit, and its energy transfer efficiency satisfies:

[0020] η = | S 21 | 2 = 4 · V ...

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Abstract

The invention discloses a non-radioactive magnetic resonant energy transmission system based on a serial-parallel circuit model. The system comprises a pair of congruent coils and a circuit consisting of additional capacitors, and is characterized in that: the circuit connected with the coils is a serial-parallel circuit model, namely that the leads at the two ends of the coils are connected in parallel with a capacitor; then the parallel circuit is connected in series with another capacitor; and finally a transmitting coil is connected with a high-frequency transmitting power supply, and a receiving coil is connected with a receiving load. The novel system has the advantages of a serial circuit and a parallel circuit model, the transmission efficiency is remarkably improved, and the transmission distance is increased. Meanwhile, the maximum energy transmission efficiency under different distances can be realized by adjusting the serial capacitor and the parallel capacitor.

Description

technical field [0001] The present invention relates to a new type of long-distance high-efficiency wireless energy transmission system, in particular to a new type of simple structure, convenient design, non-radiative magnetic resonance wireless energy transmission series-parallel complete circuit model, which can be applied to wireless charging electronic products or In wireless power transmission, the efficiency of wireless charging can be significantly improved within the distance required by the design, or the energy transmission distance can be greatly increased while maintaining high efficiency. Background technique [0002] Magnetically coupled resonant wireless energy transmission technology is a world-leading topic proposed in the past two years. This technical idea was first proposed by the research group of Marin Soljacic, an assistant professor of the Department of Physics at the Massachusetts Institute of Technology (MIT), in November 2006 at the AIP Industrial ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02J17/00H02J50/10H02J50/12
Inventor 崔铁军陈林辉刘硕周永春程强
Owner SOUTHEAST UNIV
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