IP Library Patent Application 13288603
Patent Application
App. No. 13/288,603

WIRELESS ENERGY TRANSFER FOR VEHICLE APPLICATIONS

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Quick Facts
Patent No.
US None
App. No.
13/288,603
Abstract

A vehicle powering wireless receiver for use with a first electromagnetic resonator coupled to a power supply includes a load configured to power the drive system of a vehicle using electrical power, and a second electromagnetic resonator adapted to be housed upon the vehicle and configured to be coupled to the load by a converter capable of converting energy captured by the second electromagnetic resonator into a form usable by the load, wherein the second electromagnetic resonator is configured to be wirelessly coupled to the first electromagnetic resonator to provide resonant, non-radiative wireless power to the second electromagnetic resonator from the first electromagnetic resonator.

Claims (31)

1 . A vehicle powering wireless receiver for use with a first electromagnetic resonator coupled to a power supply, first electromagnetic resonator having a mode with a resonant frequency ω 1 , an intrinsic loss rate Γ 1 , and a first Q-factor Q 1 =ω 1 /2Γ 1 , the wireless receiver comprising:

a load configured to power the drive system of a vehicle using electrical power; and

a second electromagnetic resonator adapted to be housed upon the vehicle and configured to be coupled to the load by a converter capable of converting energy captured by the second electromagnetic resonator into a form usable by the load, the second electromagnetic resonator having a mode with a resonant frequency ω 2 , an intrinsic loss rate Γ 2 , and a second Q-factor Q 2 =ω 2 /2Γ 2 ;

wherein the second electromagnetic resonator is configured to be wirelessly coupled to the first electromagnetic resonator to provide resonant, non-radiative wireless power to the second electromagnetic resonator from the first electromagnetic resonator.

2 . The wireless receiver of claim 1 , wherein the second electromagnetic resonator is configured to be disposed on the under-carriage of a vehicle.

3 . The wireless receiver of claim 2 , wherein the vehicle is an electric car.

4 . The wireless receiver of claim 2 , wherein the vehicle is a hybrid car.

5 . The wireless receiver of claim 1 , wherein a parameter of at least one of the electromagnetic resonators is tuned to optimize the power transfer based on the configuration of the vehicle.

6 . The wireless receiver of claim 1 , wherein a safety system is configured to detect objects under the vehicle.

7 . A power source for wirelessly providing power to a wireless receiver of an at least partially electrically powered vehicle, the power source comprising:

a power supply, the power supply configured to supply power at a rate sufficient to charge the battery of a vehicle that is driven at least in part by electrical power;

a first electromagnetic resonator coupled to the power supply and having a mode with a resonant frequency ω 1 , an intrinsic loss rate Γ 1 , and a first Q-factor Q 1 =ω 1 /2Γ 1 , the first electromagnetic resonator housed in a housing configured to be disposed in proximity to the vehicle; and

a converter for converting energy supplied by the power supply to a form that can be delivered to the first electromagnetic resonator;

wherein the first electromagnetic resonator is configured to be wirelessly coupled to a second electromagnetic resonator located on the vehicle and coupled to a load associated with the drive system of the vehicle to provide non-radiative wireless power to the second electromagnetic resonator, the second electromagnetic resonator having a mode with a resonant frequency ω 2 , an intrinsic loss rate Γ 2 , and a second Q-factor Q 2 =ω 2 /2Γ 2 .

8 . The power source of claim 7 , wherein the second electromagnetic resonator is configured to be disposed on the under-carriage of a vehicle.

9 . The power source of claim 8 , wherein the vehicle is an electric car.

10 . The power source of claim 8 , wherein the vehicle is a hybrid car.

11 . The power source of claim 7 , wherein a parameter of at least one of the electromagnetic resonators is tuned to optimize the power transferred based on the configuration of the vehicle.

12 . The power source of claim 7 , wherein a safety system is configured to detect objects under the vehicle.

13 . A vehicle wireless power system, comprising:

a power supply, the power supply configured to supply power at a rate sufficient to charge the battery of a vehicle that is driven at least in part by electrical power;

a first electromagnetic resonator coupled to the power supply and having a mode with a resonant frequency ω 1 , an intrinsic loss rate Γ 1 , and a first Q-factor Q 1 =ω 1 /2Γ 1 , the first electromagnetic resonator housed in a housing configured to be disposed in proximity to the vehicle;

a load configured to power the drive system of the vehicle using electrical power; and

a second electromagnetic resonator adapted to be housed upon the vehicle and configured to be coupled to the load, the second electromagnetic resonator having a mode with a resonant frequency ω 2 , an intrinsic loss rate Γ 2 , and a second Q-factor Q 2 =ω 2 /2Γ 2 ; and

at least one converter for at least one of converting energy supplied by the power supply to a form that can be delivered to the first electromagnetic resonator and converting energy captured by the second electromagnetic resonator into a form usable by the load;

wherein the second electromagnetic resonator is configured to be wirelessly coupled to the first electromagnetic resonator to provide resonant, non-radiative wireless power to the second electromagnetic resonator from the first electromagnetic resonator.

14 . The wireless power system of claim 13 , wherein the second electromagnetic resonator is configured to be disposed on the under-carriage of a vehicle.

15 . The wireless power system of claim 14 , wherein the vehicle is an electric car.

16 . The wireless power system of claim 14 , wherein the vehicle is a hybrid car.

17 . The wireless power system of claim 13 , wherein a parameter of at least one of the electromagnetic resonators is tuned to optimize the power transferred based on the configuration of the vehicle.

18 . The wireless power system of claim 13 , wherein a safety system is configured to detect objects under the vehicle.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2025
From: WITRICITY CORPORATION
To: WITRICITY AI TECH, LLC
Reel/Frame 073982/0106 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2012
From: KESLER, MORRIS P.; KURS, ANDRE B.; KARALIS, ARISTEIDIS; SOLJACIC, MARIN; HALL, KATHERINE L.; CAMPANELLA, ANDREW J.
To: WITRICITY CORPORATION
Reel/Frame 027572/0715 →