Method for driving power supply system

US9325205B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9325205-B2
Application numberUS-201213366995-A
CountryUS
Kind codeB2
Filing dateFeb 6, 2012
Priority dateMar 4, 2011
Publication dateApr 26, 2016
Grant dateApr 26, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The frequency of high-frequency voltage which is output by a variable high frequency power source included in a power transmitting device is controlled in accordance with the value of electric power received by a power receiving device. That is to say, the frequency of the high-frequency voltage is controlled in accordance with data directly relating to power supply. Thus, electric power is accurately supplied with high transmission efficiency in the power supply system.

First claim

Opening claim text (preview).

What is claimed is: 1. A method for driving a power supply system comprising: detecting a first value of electric power received by a power receiving device in a state where a power source in a power transmitting device outputs a high-frequency voltage with a first frequency, the first value of electric power being received by a magnetic resonance method; detecting a second value of electric power received by the power receiving device in a state where the power source outputs the high-frequency voltage with a second frequency higher than the first frequency, the second value of electric power being received by the magnetic resonance method; and setting a frequency of the high-frequency voltage to be output by the power source to the first frequency when the first value of electric power is larger than or equal to the second value of electric power, and to the second frequency when the first value of electric power is smaller than the second value of electric power, wherein detecting the second value of electric power is performed after detecting the first value of electric power is performed, wherein detecting the first value of electric power, detecting the second value of electric power, and setting the frequency of the high-frequency voltage to be output by the power source are repeatedly performed with the frequency of the high-frequency voltage to be output by the power source being the first frequency, until the first value of electric power becomes larger than or equal to the second value of electric power, so that the first frequency and the second frequency are increased in a step-by-step manner, and wherein the first frequency at the time when the first value of electric power is larger than or equal to the second value of electric power is held for a certain period as an optimal frequency. 2. The method for driving the power supply system according to claim 1 , wherein a sensor is provided in the power supply system, and wherein the certain period is terminated when the sensor detects a change of a power supply environment. 3. The method for driving the power supply system according to claim 1 , wherein a value of electric power in a temporal frequency which is set in setting the frequency of the high-frequency voltage to be output by the power source step performed plural times is held until at least setting the frequency of the high-frequency voltage to be output by the power source step performed next time, so that detecting the first value of electric power is not performed in subsequent times. 4. The method for driving the power supply system according to claim 1 , wherein detecting the first value of electric power is performed in the power transmitting device. 5. The method for driving the power supply system according to claim 1 , wherein detecting the second value of electric power is performed in the power transmitting device. 6. The method for driving the power supply system according to claim 1 , wherein supply of electric power from the power transmitting device to the power receiving device and transmission and reception of a signal between the power transmitting device and the power receiving device are performed through a resonance coil included in the power transmitting device and a resonance coil included in the power receiving device. 7. A method for driving a power supply system comprising: detecting a first value of electric power received by a power receiving device in a state where a power source in a power transmitting device outputs a high-frequency voltage with a first frequency, the first value of electric power being received by a magnetic resonance method; detecting a second value of electric power received by the power receiving device in a state where the power source outputs the high-frequency voltage with a second frequency higher than the first frequency, the second value of electric power being received by the magnetic resonance method; and setting a frequency of the high-frequency voltage to be output by the power source to the first frequency when the first value of electric power is larger than or equal to the second value of electric power, and to the second frequency when the first value of electric power is smaller than the second value of electric power, wherein detecting the first value of electric power is performed after detecting the second value of electric power is performed, wherein detecting the first value of electric power, detecting the second value of electric power, and setting the frequency of the high-frequency voltage to be output by the power source are repeatedly performed with the frequency of the high-frequency voltage to be output by the power source being the second frequency, until the first value of electric power becomes smaller than the second value of electric power, so that the first frequency and the second frequency are decreased in a step-by-step manner, and wherein the second frequency at the time when the first value of electric power is smaller than the second value of electric power is held for a certain period as an optimal frequency. 8. The method for driving the power supply system according to claim 7 , wherein a sensor is provided in the power supply system, and wherein the certain period is terminated when the sensor detects a change of a power supply environment. 9. The method for driving the power supply system according to claim 7 , wherein a value of electric power in a temporal frequency which is set in setting the frequency of the high-frequency voltage to be output by the power source step performed plural times is held until at least setting the frequency of the high-frequency voltage to be output by the power source step performed next time, so that detecting the second value of electric power is not performed in subsequent times. 10. The method for driving the power supply system according to claim 7 , wherein detecting the first value of electric power is performed in the power transmitting device. 11. The method for driving the power supply system according to claim 7 , wherein detecting the second value of electric power is performed in the power transmitting device. 12. The method for driving the power supply system according to claim 7 , wherein supply of electric power from the power transmitting device to the power receiving device and transmission and reception of a signal between the power transmitting device and the power receiving device are performed through a resonance coil included in the power transmitting device and a resonance coil included in the power receiving device. 13. A method for driving a power supply system comprising: detecting a first value of electric power received by a power receiving device in a state where a power source in a power transmitting device outputs a high-frequency voltage with a first frequency, the first value of electric power being received by a magnetic resonance method; detecting a second value of electric power received by the power receiving device in a state where the power source outputs the high-frequency voltage with a second frequency higher than the first frequency, the second value of electric power being received by the magnetic resonance method; and setting a frequency of the high-frequency voltage to be output by the power source to the first frequency when the first value of electric power is larger than the second value of electric power, and to the second frequency when the first value of electric power is smaller than or equal to the second value of electric power, wherein detecting the second value of electric power is performed after detecting the first

Assignees

Inventors

Classifications

  • Installations of cables or lines through walls, floors or ceilings, e.g. into buildings · CPC title

  • using two or more transmitting or receiving devices (H02J50/50 takes precedence) · CPC title

  • Heat or fire protective means (for fire in electric circuits A62C3/16) · CPC title

  • H02J50/80Primary

    involving the exchange of data, concerning supply or distribution of electric power, between transmitting devices and receiving devices · CPC title

  • of the resonant type · CPC title

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Frequently asked questions

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What does patent US9325205B2 cover?
The frequency of high-frequency voltage which is output by a variable high frequency power source included in a power transmitting device is controlled in accordance with the value of electric power received by a power receiving device. That is to say, the frequency of the high-frequency voltage is controlled in accordance with data directly relating to power supply. Thus, electric power is acc…
Who is the assignee on this patent?
Kamata Koichiro, Semiconductor Energy Lab
What technology area does this patent fall under?
Primary CPC classification H02J50/80. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Apr 26 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).