IP Library Patent Application 18425907
Patent Application
App. No. 18/425,907

METHODS FOR OPTIMIZED WIRELESS POWER DELIVERY TO MULTI-ANTENNA RECEIVERS

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Patent No.
US None
App. No.
18/425,907
Abstract

Described herein are embodiments of apparatuses and methods for optimizing transmissions of wireless power to a wireless power receiver (WPR). In some embodiments, a plurality of subantennas transmit a respective plurality of beacon signals in a beacon duration. Each of the respective plurality of beacon signals is associated with a respective phase set. At least one of the plurality of antennas receives, following the beacon duration, a wireless power transmission transmitted by a wireless power transmitter (WPT). The wireless power transmission uses phase settings based on at least one phase set derived from at least one beacon transmitted in the beacon duration. Direct current (DC) voltage is provided from radio frequency (RF) energy received in the wireless power transmission.

Claims (35)

1 . A wireless power receiver (WPR) comprising:

a processor;

an antenna array comprising a plurality of subantennas; and

a rectifier;

wherein the processor and the antenna array comprising the plurality of subantennas are configured to transmit, in a plurality of beacon durations, a respective plurality of beacon signals, wherein each of the respective plurality of beacon signals is associated with a respective phase set;

wherein at least one of the plurality of subantennas receives, following each of the beacon durations, a wireless power transmission transmitted by a wireless power transmitter (WPT), the wireless power transmission using phase settings based on at least one phase set derived from at least one beacon transmitted in previous beacon durations; and

wherein the rectifier is configured to provide direct current (DC) voltage from radio frequency (RF) energy received in the wireless power transmission.

2 . The WPR of claim 1 , wherein each of the beacon signals carries a signature associated with a respective one of the plurality of subantennas.

3 . The WPR of claim 1 , wherein the phase settings of the wireless power transmissions are based on a combination of phase sets derived from a plurality of beacons transmitted in previous beacon durations.

4 . The WPR of claim 1 , wherein the at least one beacon from which the at least one phase set is derived is transmitted from the at least one of the plurality of subantennas that receives the wireless power transmission.

5 . The WPR of claim 1 , wherein another at least one of the plurality of subantennas does not receive the wireless power transmission from the WPT, based on a signal quality of a beacon signal transmitted using the another at least one of the plurality of subantennas.

6 . The WPR of claim 1 , wherein at least one of the plurality of antennas receives the wireless power transmission from the WPT at a power level lower than another subantenna, based on a signal quality of a beacon signal transmitted using the at least one of the plurality of subantennas.

7 . The WPR of claim 1 , wherein the phase settings of the wireless power transmission are further based on an efficiency of the rectifier in providing DC voltage.

8 . A wireless power receiver (WPR) comprising:

a processor;

an antenna array comprising a plurality of subantennas; and

a rectifier;

wherein the processor and the antenna array comprising the plurality of subantennas are configured to transmit a respective plurality of beacon signals in a beacon duration, wherein each of the respective plurality of beacon signals is associated with a respective phase set;

wherein at least one of the plurality of subantennas receives, following the beacon duration, a wireless power transmission transmitted by a wireless power transmitter (WPT), the wireless power transmission using phase settings based on at least one phase set derived from at least one beacon transmitted in the beacon duration; and

wherein the rectifier is configured to provide direct current (DC) voltage from radio frequency (RF) energy received in the wireless power transmission.

9 . The WPR of claim 8 , wherein the processor and at least one of the plurality of subantennas is configured to transmit information indicating: a number of beacons to be transmitted, a number of the plurality of subantennas, a multiplexing scheme to be applied to the beacon signals, a time interval length, or a sequence of the beacon signals to be transmitted.

10 . The WPR of claim 8 , wherein the information is transmitted in a preamble, and wherein the preamble is transmitted at the beginning of at least one of the plurality of beacon signals.

11 . The WPR of claim 8 , wherein the plurality of beacon signals are time-division multiplexed.

12 . The WPR of claim 8 , wherein the plurality of beacon signals are code-division multiplexed.

13 . The WPR of claim 8 , wherein the phase settings of the wireless power transmissions are based on a combination of phase sets derived from at least a subset of the plurality of beacons transmitted in the beacon duration.

14 . The WPR of claim 8 , wherein the phase settings of the wireless power transmission are further based on an efficiency of the rectifier in providing DC voltage.

15 . A method performed by a wireless power receiver (WPR) comprising:

transmitting, using a plurality of subantennas of an antenna array, a respective plurality of beacon signals in a beacon duration, wherein each of the respective plurality of beacon signals is associated with a respective phase set;

receiving, by at least one of the plurality of subantennas, following the beacon duration, a wireless power transmission transmitted by a wireless power transmitter (WPT), the wireless power transmission using phase settings based on at least one phase set derived from at least one beacon transmitted in the beacon duration; and

providing direct current (DC) voltage from radio frequency (RF) energy received in the wireless power transmission.

16 . The method of claim 15 , further comprising transmitting, by at least one of the plurality of subantennas, information indicating: a number of beacons to be transmitted, a number of the plurality of subantennas, a multiplexing scheme to be applied to the beacon signals, a time interval length, or a sequence of the beacon signals to be transmitted.

17 . The method of claim 16 , wherein the information is transmitted in a preamble, and wherein the preamble is included at the beginning of at least one of the plurality of beacon signals.

18 . The method of claim 15 , wherein the plurality of beacon signals are time-division multiplexed.

19 . The method of claim 15 , wherein the plurality of beacon signals are code-division multiplexed.

20 . The method of claim 15 , wherein the phase settings of the wireless power transmissions are based on a combination of phase sets derived from at least a subset of the plurality of beacons transmitted in the beacon duration.

Assignments (2)
AMENDED AND RESTATED NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Jul 15, 2024
From: OSSIA INC.
To: FARAH CAPITAL LIMITED, AS SECURED PARTY; NERVE INVESTMENT SPV LTD, AS SECURED PARTY; TOYODA GOSEI., LTD
Reel/Frame 068369/0303 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2024
From: ZEINE, HATEM; GUCLU, CANER
To: OSSIA INC.
Reel/Frame 066283/0993 →