Method and apparatus for position alignment using low-frequency antennas in wireless power transfer system

US10622846B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10622846-B2
Application numberUS-201815892805-A
CountryUS
Kind codeB2
Filing dateFeb 9, 2018
Priority dateFeb 17, 2017
Publication dateApr 14, 2020
Grant dateApr 14, 2020

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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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Abstract

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A position alignment method for position alignment between a position alignment apparatus including a reception pad and a magnetic field detection apparatus including a transmission pad which performs wireless power transfer (WPT) includes: connecting, by the position alignment apparatus, to the magnetic field detection apparatus using wireless communication, wherein at least one antenna is located in the transmission pad; radiating, by the position alignment apparatus, at least one magnetic field using at least one antenna located in the reception pad; receiving, by the position alignment apparatus, magnetic field measurement values from the magnetic field detection apparatus; and obtaining, by the position alignment apparatus, information indicating a positional difference between the reception pad and the transmission pad by comparing the magnetic field measurement values with previously-stored reference values.

First claim

Opening claim text (preview).

What is claimed is: 1. A position alignment method for position alignment between a position alignment apparatus including a reception pad and a magnetic field detection apparatus including a transmission pad which performs wireless power transfer (WPT), the position alignment method comprising: connecting, by the position alignment apparatus, to the magnetic field detection apparatus using wireless communication, wherein at least one antenna is located in the transmission pad; radiating, by the position alignment apparatus, at least one magnetic field using at least one antenna located in the reception pad; receiving, by the position alignment apparatus, magnetic field measurement values from the magnetic field detection apparatus; and obtaining, by the position alignment apparatus, information indicating a positional difference between the reception pad and the transmission pad by comparing the magnetic field measurement values with previously-stored reference values, wherein the at least one antenna located in the reception pad includes two antennas located in a first region and a second region, respectively, into which the reception pad is divided in a left-right direction, wherein the at least one antenna located in the transmission pad includes four antennas located in an upper left region, an upper right region, a lower left region, and a lower right region, respectively, wherein the upper left region, the upper right region, the lower left region, and the lower right region have a same size, and wherein the magnetic field measurement values include: a measurement value of a first magnetic flux detected by a first antenna of the four antennas in the transmission pad based on magnetic field radiated by a first antenna of the two antennas located in the reception pad and a second antenna of the two antennas located in the reception pad; a measurement value of a second magnetic flux detected by a second antenna of the four antennas in the transmission pad based on magnetic field radiated by the first antenna of the two antennas located in the reception pad and the second antenna of the two antennas located in the reception pad; a measurement value of a third magnetic flux detected by a third antenna of the four antennas in the transmission pad based on magnetic field radiated by the first antenna of the two antennas located in the reception pad and the second antenna of the two antennas located in the reception pad; and a measurement value of a fourth magnetic flux detected by a fourth antenna of the four antennas in the transmission pad based on magnetic field radiated by the first antenna of the two antennas located in the reception pad and the second antenna of the two antennas located in the reception pad. 2. The position alignment method according to claim 1 , wherein the connecting to the magnetic field detection apparatus comprises: searching, by the position alignment apparatus, for a magnetic field detection apparatus within a predefined radius using wireless communication; discovering, by the position alignment apparatus, at least one magnetic field detection apparatus within the predefined radius; selecting, by the position alignment apparatus, one of the discovered at least one magnetic field detection apparatus based on at least one of: a received signal strength indicator (RSSI), a time of flight (ToF), a time difference of flight (TDoF), a time of arrival (ToA), and a time difference of arrival (TDoA); and connecting, by the position alignment apparatus, to the selected magnetic field detection apparatus. 3. The position alignment method according to claim 1 , wherein the radiating of the at least one magnetic field comprises: determining, by the position alignment apparatus, whether the at least one antenna located in the reception pad operates normally; and driving, by the position alignment apparatus, the at least one antenna located in the reception pad to radiate the at least one magnetic field when the at least one antenna located in the reception pad operates normally. 4. The position alignment method according to claim 1 , wherein the at least one antenna located in the reception pad and the at least one antenna located in the transmission pad are ferrite rod antennas using a low-frequency (LF) band. 5. The position alignment method according to claim 1 , wherein the information indicating the positional difference between the reception pad and the transmission pad includes at least one of: a separation distance along an x-axis representing a horizontal direction with respect to the reception pad, a separation distance along a y-axis representing a vertical direction with respect to the reception pad, a separation distance along a z-axis representing a direction perpendicular to the reception pad, and a torsional degree between the horizontal direction of the reception pad and a horizontal direction of the transmission pad. 6. A position alignment apparatus for performing position alignment between the position alignment apparatus including a reception pad and a magnetic field detection apparatus including a transmission pad which performs wireless power transfer (WPT), the position alignment apparatus comprising: at least one antenna located in the reception pad; at least one processor; and a memory storing program instructions executed by the at least one processor, wherein, when the program instructions are executed, the at least one processor is configured to: connect to the magnetic field detection apparatus using wireless communication, wherein at least one antenna is located in the transmission pad; radiate at least one magnetic field using at least one antenna located in the reception pad; receive magnetic field measurement values from the magnetic field detection apparatus; and obtain information indicating a positional difference between the reception pad and the transmission pad by comparing the magnetic field measurement values with previously-stored reference values, wherein the at least one antenna located in the reception pad includes two antennas located in a first region and a second region, respectively, into which the reception pad is divided in a left-right direction, wherein the at least one antenna located in the transmission pad includes four antennas located in an upper left region, an upper right region, a lower left region, and a lower right region, respectively, wherein the upper left region, the upper right region, the lower left region, and the lower right region have a same size, and wherein the magnetic field measurement values include: a measurement value of a first magnetic flux detected by a first antenna of the four antennas in the transmission pad based on magnetic field radiated by a first antenna of the two antennas located in the reception pad and a second antenna of the two antennas located in the reception pad; a measurement value of a second magnetic flux detected by a second antenna of the four antennas in the transmission pad based on magnetic field radiated by the first antenna of the two antennas located in the reception pad and the second antenna of the two antennas located in the reception pad; a measurement value of a third magnetic flux detected by a third antenna of the four antennas in the transmission pad based on magnetic field radiated by the first antenna of the two antennas located in the reception pad and the second antenna of the two antennas located in the reception pad; and a measurement value of a fourth magnetic flux detected by a fourth antenna of the four antennas in the transmission pad based on magnetic field radiated by the first antenna of the two antennas located in the reception pad and the second antenna of the two antennas located in the reception pad.

Assignees

Inventors

Classifications

  • Information or communication technologies improving the operation of electric vehicles · CPC title

  • Plug-in electric vehicles · CPC title

  • H02J50/90Primary

    involving detection or optimisation of position, e.g. alignment · CPC title

  • specially adapted for charging by inductive energy transfer · CPC title

  • of the resonant type · CPC title

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What does patent US10622846B2 cover?
A position alignment method for position alignment between a position alignment apparatus including a reception pad and a magnetic field detection apparatus including a transmission pad which performs wireless power transfer (WPT) includes: connecting, by the position alignment apparatus, to the magnetic field detection apparatus using wireless communication, wherein at least one antenna is loc…
Who is the assignee on this patent?
Hyundai Motor Co Ltd, Kia Motors Corp
What technology area does this patent fall under?
Primary CPC classification H02J50/90. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Apr 14 2020 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 5 related publications on this page (citations in our corpus or others sharing the same primary CPC).