IP Library › Granted Patent US 12,506,368
Granted Patent B2
US 12,506,368 · App. 18/748,283 · Granted Dec 23, 2025

Foreign object detection in a wireless power transfer system

Inventors: Wilhelmus Gerardus Maria Ettes (Leeuwarden, NL); Eddy Gerrit Veltman (Steenbergen, NL); Andries Van Wageningen (Wijlre, NL)
Assignee: Koninklijke Philips N.V.
H02J50/60H02J50/12H02J50/80
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Quick Facts
Patent No.
US 12,506,368
App. No.
18/748,283
Granted
Dec 23, 2025
Kind
B2
Abstract

According to some implementations, a wireless power transmitter and a wireless power receiver of a wireless power system are disclosed. According to one aspect, the wireless power transmitter includes a wireless power transmitter circuit configured to generate a power transfer signal, a driver circuit configured to generate a drive signal for the wireless power transmitter circuit during a power transfer time interval. The wireless power transmitter includes an adapter circuit configured to generate a varying test drive signal during an adaptation time interval by varying at least one of a frequency, voltage, current, duty cycle, signal level, or amplitude of the test drive signal. Wireless power transmitter is configured to perform foreign object detection based on the signal parameter determined by the adapter circuit. According to some implementations, the wireless power receiver is configured to transmit messages which indicate the timing for detection of the signal parameter by the adapter circuit.

Claims (54)

1 . A power transmitter comprising:

a wireless power transmitter circuit configured to generate a power transfer signal;

a driver circuit configured to generate a drive signal for the wireless power transmitter circuit during a power transfer time interval;

a foreign object detection circuit configured to perform a foreign object detection test during a foreign object detection time interval in response to a measured parameter for the test drive signal;

an adapter circuit configured to generate a varying test drive signal during an adaptation time interval by varying at least one of a frequency, duty cycle, signal level, or amplitude of the test drive signal,

wherein the adaptor circuit is configured to determine a test drive signal parameter value as the varying test drive signal is varied; and

a memory circuit configured to store the test drive signal parameter value,

wherein the foreign object detection circuit is configured to receive the test drive signal parameter value from the memory circuit, and

wherein the foreign object detection circuit is configured to set a signal property of the test drive signal during a foreign object detection time interval based on the test drive signal parameter value,

wherein the foreign object detection time interval and the adaptation time interval are distinct from each other.

2 . The power transmitter of claim 1 , further comprising a receiver circuit,

wherein the receiver circuit is configured to receive messages from a power receiver,

wherein the adapter circuit is configured to determine the test drive signal parameter value in response to a message received from the power receiver.

3 . The power transmitter of claim 1 , wherein the adapter circuit is configured to determine the test drive signal parameter value at a time indicated by the message received from the power receiver in response to a varying property of the varying test drive signal.

4 . The power transmitter of claim 1 ,

wherein the adapter circuit is configured to measure the signal property of the test drive signal when varying the test drive signal, and

wherein the adapter circuit is configured to determine the test drive signal parameter value in response to the signal property.

5 . The power transmitter of claim 1 , wherein the adapter circuit is configured to determine the test drive signal parameter value in response to a rate of change of the signal property.

6 . The power transmitter of claim 5 , wherein the adapter circuit is configured to determine the test drive signal parameter value in response to a value of the test drive parameter when detecting a change in the rate of change of the signal property.

7 . The power transmitter of claim 1 ,

wherein the signal property of the test drive signal is a current or voltage of the test drive signal, and

wherein the test drive signal parameter value is a frequency of the test drive signal.

8 . The power transmitter of claim 1 , further comprising a test generator circuit,

wherein the test generator circuit comprises a full bridge switch output circuit,

wherein the test generator circuit is configured to generate the test drive signal, and

wherein the test generator circuit is configured to change an operating mode for the full bridge switch output circuit from a full bridge operational mode during at least one power transfer time intervals to a half bridge operational mode during at least one foreign object detection time interval.

9 . The power transmitter of claim 1 , wherein the adapter circuit is configured to determine the test drive signal parameter value in response to a value of a property of the varying test drive signal when the power receiver begins to extract power from the test drive signal.

10 . The power transmitter of claim 1 , wherein the wireless power transmitter circuit, the foreign object detection circuit, and the adapter circuit use a same coil for generating an electromagnetic field.

11 . The power transmitter of claim 1 , wherein the adapter circuit is configured to gradually change the signal property of the test drive signal from an initial value to the test drive signal parameter value during at least one foreign object detection time interval.

12 . A wireless power receiver comprising:

a power receiving circuit configured to extract power from a power transfer signal,

wherein the power receiving circuit is configured to receive a test drive signal during a foreign object detection adaptation time interval from a wireless power transmitter; and

a message transmitter circuit, configured to transmit a foreign object detection configuration message to the wireless power transmitter,

wherein the foreign object detection configuration message comprises an indication of a time at which the wireless power transmitter is to determine a signal property of a varying test drive signal for foreign object detection, and

wherein the wireless power receiver is configured to receive, from the wireless power transmitter, during a foreign object detection time interval, a foreign object detection signal based on the indicated time in the foreign object detection configuration message.

13 . The wireless power receiver of claim 12 ,

wherein the message comprises an indication that the wireless power receiver has initiated extraction of power from the test drive signal.

14 . A non-transitory computer readable medium having stored thereon instructions that when executed by a processor cause processing circuitry of a wireless power transmitter to:

generate a power transfer signal;

generate a drive signal for a wireless power transmitter circuit during a power transfer time interval,

perform a foreign object detection test during a foreign object detection time interval in response to a measured parameter for the test drive signal;

generate a varying test drive signal during an adaptation time interval by varying at least one of a frequency, duty cycle, signal level, or amplitude of the test drive signal,

wherein the foreign object detection time interval and the adaptation time interval are distinct from each other,

determine a test drive signal parameter value; and

store the test drive signal parameter value in a memory,

receive the test drive signal parameter value from the memory; and

set a signal property of the test drive signal during a foreign object detection time interval based on the test drive signal parameter value.

15 . The non-transitory computer readable medium of claim 14 , further comprising instructions that when executed cause the processing circuitry of the wireless power transmitter to receive messages from a power receiver and determine the test drive signal parameter value in response to a message received from the power receiver.

16 . The non-transitory computer readable medium of claim 14 , further comprising instructions that when executed cause the processing circuitry of the wireless power transmitter to determine the test drive signal parameter value in response to a varying property of the varying test drive signal at a time indicated by the message received from the power receiver.

17 . The non-transitory computer readable medium of claim 14 , further comprising instructions that when executed cause the processing circuitry of the wireless power transmitter to measure a signal property of the test drive signal when varying the test drive signal,

wherein the test drive signal parameter value is based on the signal property.

18 . The non-transitory computer readable medium of claim 17 , further comprising instructions that when executed cause the processing circuitry of the wireless power transmitter to determine the test drive signal parameter value in response to a rate of change of the signal property.

19 . The non-transitory computer readable medium of claim 18 , further comprising instructions that when executed cause the processing circuitry of the wireless power transmitter to determine the test drive signal parameter value in response to a value of the test drive parameter when detecting a change in the rate of change of the signal property.

20 . The non-transitory computer readable medium of claim 14 , further comprising instructions that when executed cause the processing circuitry of the wireless power transmitter to gradually change a signal property of the test drive signal from an initial value to the test drive signal parameter value during at least one foreign object detection time interval.

Priority Claims (1)
EP 17191588 · Sep 18, 2017 · regional
Continuity (2)
Continuation 16646350
Related Publication 20240339871A1 · Oct 10, 2024
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