IP Library Patent Application 17882011
Patent Application
App. No. 17/882,011

BATTERY CHARGING SYSTEM AND METHOD FOR ELECTRIC VEHICLE

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Quick Facts
Patent No.
US None
App. No.
17/882,011
Abstract

Systems and methods for charging a battery of an electric vehicle are provided. One method includes heating a battery of the electric vehicle using a battery charger of the electric vehicle. The method includes using the battery charger to generate heat without charging the battery with the battery charger, and transferring the heat generated using the battery charger to the battery to heat the battery. Once a temperature of the battery is sufficiently high to accept a charge, the battery charger may be used to charge the battery.

Claims (41)

1 . A method of heating a battery of an electric vehicle using a battery charger of the electric vehicle, the method comprising:

using the battery charger to generate heat without charging the battery with the battery charger; and

transferring the heat generated using the battery charger to the battery to heat the battery.

2 . The method as defined in claim 1 , wherein using the battery charger to generate heat without charging the battery with the battery charger includes repeatedly actuating a switch of the battery charger to generate heat.

3 . The method as defined in claim 1 , wherein using the battery charger to generate heat without charging the battery with the battery charger includes actuating a switch of the battery charger at a frequency between 50 kHz and 1 MHz.

4 . The method as defined in claim 3 , comprising using electric power from the battery to actuate the switch of the battery charger.

5 . The method as defined in claim 1 , wherein using the battery charger to generate heat without charging the battery with the battery charger includes repeatedly actuating a plurality of switches of the battery charger to generate heat.

6 . The method as defined in claim 1 , wherein the battery charger is prevented from transferring electric power to the battery when the battery charger is used to generate heat without charging the battery.

7 . The method as defined in claim 1 , wherein the battery charger is prevented from transferring electric power to the battery when a temperature of the battery is below a threshold temperature.

8 . The method as defined in claim 1 , comprising transferring the heat generated using the battery charger to the battery by conductive heat transfer.

9 . The method as defined in claim 1 , comprising using a thermal fluid to transfer the heat generated using the battery charger to the battery to heat the battery.

10 . The method as defined in claim 9 , wherein:

the battery is a high-voltage battery; and

the method includes using electric power from a low-voltage battery of the electric vehicle to drive a pump to circulate the thermal fluid.

11 . The method as defined in claim 1 , wherein using the battery charger to generate heat without charging the battery with the battery charger includes supplying electric power from a source of electric power external to the electric vehicle to a resistive load other than the battery, via the battery charger.

12 . The method as defined in claim 11 , comprising transferring heat generated by the resistive load to the battery.

13 . The method as defined in claim 12 , comprising using a thermal fluid to transfer the heat from the resistive load to the battery.

14 . The method as defined in claim 1 , comprising:

generating heat using an electric motor of the electric vehicle without propelling the electric vehicle using the electric motor; and

transferring the heat generated using the electric motor of the electric vehicle to the battery.

15 . The method as defined in claim 14 , comprising using a thermal fluid to transfer the heat from the electric motor to the battery.

16 . A battery charging system of an electric vehicle, the battery charging system comprising:

a battery charger for supplying electric power from an electric power source external to the electric vehicle to a battery of the electric vehicle during charging of the battery;

one or more data processors operatively connected to the battery charger; and

non-transitory machine-readable memory storing instructions executable by the one or more data processors and configured to cause the one or more data processors to perform the method as defined in claim 1 .

17 . A method of charging a battery of an electric vehicle, the method comprising:

generating heat with a battery charger by actuating one or more switches of the battery charger without charging the battery with the battery charger;

transferring the heat generated by the battery charger to the battery to heat the battery; and

after transferring the heat generated by the battery charger to the battery, using the battery charger to charge the battery.

18 . The method as defined in claim 17 , comprising:

sensing a temperature of the battery;

preventing the battery charger from charging the battery when the temperature of the battery is below a threshold temperature; and

initiating charging of the battery using the battery charger when the temperature of the battery has reached the threshold temperature.

19 . The method as defined in claim 18 , wherein the temperature of the battery is sensed when transferring the heat generated by the battery charger to the battery.

20 . The method as defined in claim 17 , comprising ceasing to generate heat with the battery charger by actuating the one or more switches of the battery charger without charging the battery with the battery charger when a temperature of the battery has reached a threshold temperature.

21 . A battery charging system of an electric vehicle, the battery charging system comprising:

a battery charger for supplying electric power from an electric power source external to the electric vehicle to a battery of the electric vehicle during charging of the battery;

an electrically resistive load other than the battery operatively connectable to the battery charger to receive electric power from the electric power source external to the electric vehicle via the battery charger; and

a heat exchanger thermally coupled to both the battery charger and the electrically resistive load to facilitate heat transfer from the battery charger and from the electrically resistive load to a thermal fluid providing thermal communication between the heat exchanger and the battery of the electric vehicle.

22 . The battery charging system as defined in claim 21 , wherein the heat exchanger includes a liquid cold plate heat exchanger.

23 . The battery charging system as defined in claim 21 , wherein the electrically resistive load other than the battery is operatively connectable to the battery charger to receive electric power from the battery via the battery charger.

Assignments (2)
SECURITY INTEREST Recorded Nov 1, 2024
From: TAIGA MOTORS INC.
To: EXPORT DEVELOPMENT CANADA
Reel/Frame 069289/0545 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2022
From: BERNATCHEZ, GABRIEL; BRUNEAU, SAMUEL; GAGNON, MARC-OLIVIER; BOUDREAU, JESSIE; GANGAVARAPU, SIVANAGARAJU
To: TAIGA MOTORS INC.
Reel/Frame 060733/0122 →