Foreign matter detection device and method for wireless power supply device

US2016016478A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016016478-A1
Application numberUS-201514867053-A
CountryUS
Kind codeA1
Filing dateSep 28, 2015
Priority dateJul 16, 2013
Publication dateJan 21, 2016
Grant date

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A foreign matter detection device including a detection coil between a power transmitting coil and a power receiving coil, and a detection unit detecting an induced voltage V generated in the detection coil and detects, from this induced voltage, presence or absence of a conductive foreign matter between the power transmitting coil and the power receiving coil. The detection coil includes a continuous conductive wire where two loop portions are wound in mutually opposite directions. An area or a winding number of each loop portion or a direction connecting centroids of the two loop portions is set so that the induced voltage (i.e., a reference voltage) generated in the detection coil when no conductive foreign matters exist becomes 0 or a minimum.

First claim

Opening claim text (preview).

1 . A foreign matter detection device for a wireless power supply device, comprising: a detection coil positioned between a power transmitting coil and a power receiving coil; and a detection unit which detects an induced voltage generated in the detection coil and detects, from the detected induced voltage, presence or absence of a conductive foreign matter positioned between the power transmitting coil and the power receiving coil, wherein the detection coil comprises a continuous conductive wire in which two loop portions are wound in mutually opposite directions, and an area or a winding number of each of the loop portions or a direction connecting centroids of the two loop portions is set so that an induced voltage generated in the detection coil when a conductive foreign matter is not present becomes 0 or a minimum. 2 . The foreign matter detection device for the wireless power supply device according to claim 1 , wherein the two loop portions are positioned on the same plane positioned between the power transmitting coil and the power receiving coil, and are arranged so that the direction connecting the centroids is perpendicular to a magnetic gradient direction at an installation position of the detection coil. 3 . The foreign matter detection device for the wireless power supply device according to claim 2 , wherein the loop portions are circular, rectangular, triangular or rhombic loops positioned so that the loops do not overlap with each other on the same plane. 4 . The foreign matter detection device for the wireless power supply device according to claim 1 , wherein the detection unit includes a detecting unit which detects an induced voltage generated in the detection coil, and a determining unit which compares the detected induced voltage with a reference voltage generated when a conductive foreign matter is not present, to determine presence or absence of a conductive foreign matter. 5 . A foreign matter detecting method for a wireless power supply device, comprising: constituting a detection coil positioned between a power transmitting coil and a power receiving coil, by a continuous conductive wire in which two loop portions are wound in mutually opposite directions; setting an area or a winding number of each loop portion or a direction connecting centroids of the two loop portions so that an induced voltage generated in the detection coil when a conductive foreign matter is not present between the power transmitting coil and the power receiving coil becomes 0 or a minimum; and detecting an induced voltage generated in the detection coil and detecting, from the detected induced voltage, presence or absence of a conductive foreign matter positioned between the power transmitting coil and the power receiving coil. 6 . The foreign matter detecting method for the wireless power supply device according to claim 5 , wherein while moving the detection coil translatorily back and forth or right and left or rotating the detection coil around a vertical axis, an induced voltage generated in the detection coil is measured, and the detection coil is positioned at a position and a rotation angle at which a value of the measured induced voltage becomes 0 or the minimum. 7 . A foreign matter detection device for a wireless power supply device, comprising: a detection coil positioned between a power transmitting coil and a power receiving coil; and a detection unit which detects an induced voltage generated in the detection coil and detecting, from the detected induced voltage, presence or absence of a conductive foreign matter positioned between the power transmitting coil and the power receiving coil, wherein the detection coil comprises one conductive wire bent into a rectangular shape, and the conductive wire surrounds magnetic fluxes generated in mutually opposite directions between the power transmitting coil and the power receiving coil to contain equal amounts of the magnetic fluxes, and is disposed so that an induced voltage generated when a conductive foreign matter is not present becomes 0 or a minimum. 8 . The foreign matter detection device for the wireless power supply device according to claim 7 , wherein a plurality of the detection coils are positioned so as not to overlap with each other and so as to be in parallel with each other on the same plane. 9 . The foreign matter detection device for the wireless power supply device according to claim 7 , wherein the detection unit includes a detecting unit which detects an induced voltage generated in the detection coil, and a determining unit which compares the detected induced voltage with a reference voltage generated when a conductive foreign matter is not present, to determine presence or absence of a conductive foreign matter. 10 . A foreign matter detecting method for a wireless power supply device, comprising: constituting a detection coil positioned between a power transmitting coil and a power receiving coil, by one continuous conductive wire bent into a rectangular shape; disposing the conductive wire so that the conductive wire surrounds magnetic fluxes generated in mutually opposite directions between the power transmitting coil and the power receiving coil to contain equal amounts of the magnetic fluxes, and so that an induced voltage generated in the detection coil when a conductive foreign matter is not present becomes 0 or a minimum; and detecting an induced voltage generated in the detection coil and detecting, from the detected induced voltage, presence or absence of the conductive foreign matter positioned between the power transmitting coil and the power receiving coil. 11 . The foreign matter detecting method for the wireless power supply device according to claim 10 , wherein while moving the detection coil translatorily back and forth or right and left or rotating the detection coil around a vertical axis, an induced voltage generated in the detection coil is measured, and the detection coil is positioned at a position and a rotation angle at which a value of the measured induced voltage becomes 0 or the minimum.

Assignees

Inventors

Classifications

  • exchanging power with electric vehicles [EV] or with hybrid electric vehicles [HEV] · CPC title

  • Plug-in electric vehicles · CPC title

  • for vehicles using stored power (e.g. charging stations) · CPC title

  • Auxiliary core members; Auxiliary coils or windings · CPC title

  • Association of measuring or protective means · CPC title

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What does patent US2016016478A1 cover?
A foreign matter detection device including a detection coil between a power transmitting coil and a power receiving coil, and a detection unit detecting an induced voltage V generated in the detection coil and detects, from this induced voltage, presence or absence of a conductive foreign matter between the power transmitting coil and the power receiving coil. The detection coil includes a con…
Who is the assignee on this patent?
Ihi Corp
What technology area does this patent fall under?
Primary CPC classification B60L11/182. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Thu Jan 21 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).