METHOD FOR FOREIGN OBJECT DETECTION FOR AN INDUCTION CHARGING DEVICE AND INDUCTION CHARGING DEVICE
20170302111 · 2017-10-19
Assignee
Inventors
Cpc classification
H02J50/60
ELECTRICITY
H04W4/00
ELECTRICITY
G01V3/101
PHYSICS
H01L2221/00
ELECTRICITY
International classification
Abstract
A method for foreign object detection for an induction charging device is described, including an oscillator circuit, in particular, for a hand-held power tool, a resonance frequency and an associated actual quality of the oscillator circuit being detected and the actual quality is subsequently compared to a setpoint quality as a function of the resonance frequency and a decision is made about the presence of a foreign object based on a defined setpoint quality range. The method provides that an upper limit and/or a lower limit of the setpoint quality range and the profile of the actual quality are adapted to one another. Also described is an induction charging device including an oscillator circuit and a control and regulating unit for carrying out the method.
Claims
1.-7. (canceled)
8. A method for foreign object detection for an induction charging device including an oscillator circuit, the method comprising: detecting a resonance frequency and an associated actual quality of the oscillator circuit; subsequently comparing the actual quality to a setpoint quality as a function of the resonance frequency; determining whether a foreign object is present based on a defined setpoint quality range; and adapting at least one of an upper limit and a lower limit of the setpoint quality range and a profile of the actual quality to one another.
9. The method for foreign object detection as recited in claim 8, wherein the induction charging device is for a hand-held power tool.
10. The method for foreign object detection as recited in claim 8, further comprising changing the at least one of the upper limit and the lower limit of the setpoint quality range within a maximum setpoint quality and a minimum setpoint quality in such a way that a profile of the at least one of the upper limit and the lower limit of the setpoint quality range largely corresponds to the profile of the actual quality.
11. The method for foreign object detection as recited in claim 8, further comprising correcting the actual quality by a correction factor in such a way that the profile is at least one of linear and constant.
12. The method for foreign object detection as recited in claim 11, wherein a distance of the at least one of the upper limit and the lower limit of the setpoint quality range is maintained essentially the same with respect to the profile of the corrected actual quality.
13. The method for foreign object detection as recited in claim 11, further comprising multiplying the at least one of the upper limit and the lower limit of the setpoint quality range by the correction factor.
14. The method for foreign object detection as recited in claim 1, wherein the correction factor is defined as an inverse of the actual quality.
15. An induction charging device, comprising: an oscillator circuit; and a control and regulating unit, wherein the control and regulating unit: detects a resonance frequency and an associated actual quality of the oscillator circuit, subsequently compares the actual quality to a setpoint quality as a function of the resonance frequency, determines whether a foreign object is present based on a defined setpoint quality range, and adapts at least one of an upper limit and a lower limit of the setpoint quality range and a profile of the actual quality to one another.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
[0012]
[0013]
[0014]
DETAILED DESCRIPTION
[0015]
[0016]
[0017] Control and regulating unit 22 of induction charging device 10 is provided to determine a resonance frequency f.sub.R and an associated actual quality Q.sub.I(f.sub.R). In addition, control and regulating unit 22 is provided to compare the actual quality Q.sub.I(f.sub.R) to a setpoint quality Q.sub.s(f.sub.R) as a function of resonance frequency f.sub.R. For this purpose, control and regulating unit 22 includes a memory 26, in which a relation table is stored, which contains a setpoint quality range q.sub.s having multiple setpoint qualities Q.sub.s(f.sub.R) for the ascertained resonance frequency f.sub.R (cf. in this regard also the following explanations with respect to
[0018] During a charging operation of induction charging device 10, a foreign object detection is carried out at regular intervals. During the foreign object detection, it is checked whether one or multiple foreign objects 11, which could impair a charging operation, are situated between induction charging device 10 and rechargeable battery device 12 or are simply on top of induction charging device 10 and/or put an operator or induction charging device 10 at risk. The foreign object detection takes place in accordance with a method described in the unpublished German application DE 10 2013 212 588 in such a way that resonance frequency f.sub.R and associated actual quality Q.sub.I(f.sub.R) are initially determined. Actual quality Q.sub.I(f.sub.R) is then compared to setpoint quality Q.sub.s(f.sub.R) as a function of resonance frequency f.sub.R in order to ultimately make a decision based on the defined setpoint quality range q.sub.s whether at least one foreign object 11 is present or not.
[0019]
[0020] A third range 34, which encloses first range 30 and second range 32 is formed by an error range. If actual quality Q.sub.I(f.sub.R) is in this range 34, it is assumed that an arbitrary error is present or rechargeable battery device 12 is so poorly positioned relative to induction charging device 10 that a charging of rechargeable battery device 12 is not possible or possible only to a very limited extent. The error in this case may be located in induction charging device 10, in rechargeable battery device 12 as well as in the surroundings of charging system 14. Third range 34 includes two sub-ranges 34′, 34″. First sub-range 34′ of third range 34 is situated below lower limit q.sub.su of first range 30 in relation to quality Q. If actual quality Q.sub.I(f.sub.R) is within this first sub-range 34′, it is assumed that at least one foreign object 11 is located in an area between induction charging device 10 and rechargeable battery device 12. Second sub-range 34″ of third range 34 is situated below lower limit q.sub.su of second range 32 as related to quality Q. If actual quality Q.sub.I(f.sub.R) is within this second sub-range 34″, it is assumed that at least one foreign object 11 is situated on top of induction charging device 10.
[0021] For the profile of the actual quality Q.sub.I(f.sub.R), the following non-linear correlation apparent in
[0022] According to the present invention, it is now provided to adapt upper limit q.sub.so and/or lower limit q.sub.su of setpoint quality range q.sub.s and the profile of actual quality Q.sub.I(f.sub.R) to one another. The following
[0023] In
[0024] In
[0025] Lastly, it should be noted that the exemplary embodiments of the present invention shown are limited neither to the curve profiles shown in the figures nor to the design of the inductive charging system according to