IP Library › Granted Patent US 9,472,973
Granted Patent B2
US 9,472,973 · App. 14/321,812 · Granted Oct 18, 2016

Non-contact charging apparatus and method for charging battery

Inventors: Tomoaki Nakagawa (Wako, JP); Yusaku Amari (Wako, JP); Atsushi Hirosawa (Wako, JP)
Assignee: HONDA MOTOR CO., LTD.
H02J7/025H02J5/005H02J7/0027H02J17/00
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Quick Facts
Patent No.
US 9,472,973
App. No.
14/321,812
Granted
Oct 18, 2016
Kind
B2
Abstract

A non-contact charging apparatus includes a power-feeding coil, a power-receiving coil, a relative-position detector, and a feeding-power changing device. The power-receiving coil is configured to receive power from the power-feeding coil in a non-contact manner to charge a battery. The relative-position detector is configured to detect a distance between a center of the power-feeding coil and a center of the power-receiving coil. The feeding-power changing device is configured to decrease the power from the power-feeding coil to the power-receiving coil as the distance increases.

Claims (33)

1. A non-contact charging apparatus which receives power from a power-feeding coil through a power-receiving coil in a non-contact manner and which charges a battery with the power, the non-contact charging apparatus comprising:

a relative-position detection unit that detects a relative position between the center of the power-feeding coil and the center of the power-receiving coil; and

a feeding-power changing unit that decreases feeding power from the power-feeding coil on the basis of the detected relative position, as a deviation amount of the relative position increases,

wherein the feeding-power changing unit performs charging with the feeding power determined on the basis of the relative position detected by the relative-position detection unit before a start of the charging, and further changes the feeding power on the basis of a relative position detected at every predetermined time after the start of the charging.

2. The non-contact charging apparatus according to claim 1 ,

wherein, when a relative position changes between the previous detection and the current detection, the feeding-power changing unit interrupts the feeding of power regardless of the amount of the positional change.

3. The non-contact charging apparatus according to claim 2 ,

wherein the feeding-power changing unit restarts power supply on the basis of a result of the detection of the relative position performed by the relative-position detection unit after the interruption of feeding of power.

4. The non-contact charging apparatus according to claim 1 ,

wherein the feeding-power changing unit interrupts the feeding of power when a deviation amount of the relative position increases between the current detection and the previous detection.

5. A non-contact charging apparatus comprising:

a power-feeding coil;

a power-receiving coil configured to receive power from the power-feeding coil in a non-contact manner to charge a battery;

a relative-position detector configured to detect a distance between a center of the power-feeding coil and a center of the power-receiving coil; and

a feeding-power changing device configured to decrease the power from the power-feeding coil to the power-receiving coil as the distance increases,

wherein the feeding-power changing device performs charging of the battery with the power determined based on the distance detected by the relative-position detector before a start of the charging, and further changes the power based on the distance detected at every predetermined time after the start of the charging.

6. The non-contact charging apparatus according to claim 5 ,

wherein, when the distance changes between a previous detection and a current detection, the feeding-power changing device interrupts supplying the power regardless of an amount of change of the distance.

7. The non-contact charging apparatus according to claim 6 ,

wherein the feeding-power changing device restarts power supply based on a result of a detection of the distance performed by the relative-position detector after an interruption of supplying the power.

8. The non-contact charging apparatus according to claim 5 ,

wherein the feeding-power changing device interrupts supplying the power when an amount of change of the distance increases between a current detection and a previous detection.

9. A non-contact charging apparatus comprising:

a power-feeding coil;

a power-receiving coil configured to receive power from the power-feeding coil in a non-contact manner to charge a battery;

relative-position detection means for detecting a distance between a center of the power-feeding coil and a center of the power-receiving coil; and

feeding-power changing means for decreasing the power from the power-feeding coil to the power-receiving coil as the distance increases,

wherein the feeding-power changing means performs charging with the power determined on the basis of the distance detected by the relative-position detection means before a start of the charging, and further changes the power on the basis of a distance detected at every predetermined time after the start of the charging.

10. A method for charging a battery, comprising:

supplying power from a power-feeding coil to a power-receiving coil in a non-contact manner to charge the battery;

detecting, by a relative-position detection unit, a distance between a center of the power-feeding coil and a center of the power-receiving coil; and

changing, by a feeding-power changing unit, the power from the power-feeding coil to the power-receiving coil to decrease the power from the power-feeding coil to the power-receiving coil as the distance increases,

wherein the changing the power is determined on the basis of the distance before a start of the charging, and further changed on the basis of the distance detected at every predetermined time after the start of the charging.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2014
From: NAKAGAWA, TOMOAKI; AMARI, YUSAKU; HIROSAWA, ATSUSHI
To: HONDA MOTOR CO., LTD.
Reel/Frame 033226/0957 →
Priority Claims (1)
JP 2013-167407 · Aug 12, 2013 · national
Continuity (1)
Related Publication 20150042271A1 · Feb 12, 2015