IP Library Granted Patent US 11,021,077
Granted Patent B2
US 11,021,077 · App. 16/367,272 · Granted Jun 1, 2021

Vehicle power supply system

Inventors: Kazuya Oyama (Saitama, JP); Hirokazu Oguma (Saitama, JP)
Assignee: Honda Motor Co., Ltd.
B60L58/13B60K23/08B60L7/14B60L50/66B60L53/22B60R16/033H01M10/441B60L2240/423
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Quick Facts
Patent No.
US 11,021,077
App. No.
16/367,272
Granted
Jun 1, 2021
Kind
B2
Abstract

A vehicle power supply system includes a first drive motor, a second drive motor, a first power line to which a first inverter and a first battery are connected, a second power line to which a second inverter and a second battery are connected, a voltage converter that convert a voltage between the power lines, and a charging and discharging control device that controls charging and discharging of the batteries and by operating the inverters and and the voltage converter. A vehicle is able to travel in a drive mode of any of an all-wheel drive mode and a two-wheel drive mode. The charging and discharging control device drives the first drive motor with power that is discharged from the first battery in a case where the drive mode is the two-wheel drive mode.

Claims (53)

1. A vehicle power supply system comprising:

a first motor generator connected to a first wheel of a vehicle;

a second motor generator connected to a second wheel;

a first circuit to which a first power converter that transfers power to and from the first motor generator and a first power storage device are connected;

a second circuit to which a second power converter that transfers power to and from the second motor generator and a second power storage device are connected;

a voltage converter that converts a voltage between the first circuit and the second circuit;

a required driving force acquisition unit that acquires a required driving force; and

a charging and discharging control device that controls charging and discharging of the first and second power storage devices by operating the first and second power converters and the voltage converter,

wherein the vehicle is able to travel in a drive mode of any of an all-wheel drive mode in which the first and second wheels are used as driving wheels and a two-wheel drive mode in which the first wheel is used as a driving wheel and the second wheel is used as a driven wheel,

the vehicle power supply system further comprises a drive mode setting unit that sets the drive mode on the basis of the required driving force, and

the charging and discharging control device drives the first motor generator with power that is discharged from the first power storage device in a case where the drive mode is the two-wheel drive mode.

2. The vehicle power supply system according to claim 1 ,

wherein the charging and discharging control device deactivates the voltage converter in a case where the drive mode is the two-wheel drive mode.

3. The vehicle power supply system according to claim 2 ,

wherein a vehicle accessory that is an electrical load is connected to the second circuit, and

the charging and discharging control device drives the vehicle accessory with power that is discharged from the second power storage device in a case where the drive mode is the two-wheel drive mode.

4. The vehicle power supply system according to claim 2 ,

wherein the first power storage device is lower in output weight density and is higher in energy weight density than the second power storage device.

5. The vehicle power supply system according to claim 2 , further comprising a request operating unit capable of being operated when a driver requests power saving driving,

wherein the drive mode setting unit sets the drive mode as the two-wheel drive mode with at least the request operating unit being turned on as condition.

6. The vehicle power supply system according to claim 1 ,

wherein a vehicle accessory that is an electrical load is connected to the second circuit, and

the charging and discharging control device drives the vehicle accessory with power that is discharged from the second power storage device in a case where the drive mode is the two-wheel drive mode.

7. The vehicle power supply system according to claim 6 ,

wherein the first power storage device is lower in output weight density and is higher in energy weight density than the second power storage device.

8. The vehicle power supply system according to claim 6 , further comprising a request operating unit capable of being operated when a driver requests power saving driving,

wherein the drive mode setting unit sets the drive mode as the two-wheel drive mode with at least the request operating unit being turned on as condition.

9. The vehicle power supply system according to claim 1 , further comprising a second power storage parameter acquisition unit that acquires a value of a second power storage parameter increasing in accordance with an amount of power storage of the second power storage device,

wherein the charging and discharging control device deactivates the voltage converter in a case where the drive mode is the two-wheel drive mode and a value of the second power storage parameter is equal to or larger than a first threshold, and charges the second power storage device with power that is discharged from the first power storage device through the voltage converter in a case where the drive mode is the two-wheel drive mode and the value of the second power storage parameter is less than the first threshold.

10. The vehicle power supply system according to claim 9 ,

wherein a vehicle accessory that is an electrical load is connected to the second circuit, and

the charging and discharging control device drives the vehicle accessory with power that is discharged from the second power storage device in a case where the drive mode is the two-wheel drive mode and the value of the second power storage parameter is equal to or larger than the first threshold, and drives the vehicle accessory with power that is discharged from the first power storage device through the voltage converter in a case where the drive mode is the two-wheel drive mode and the value of the second power storage parameter is less than the first threshold.

11. The vehicle power supply system according to claim 10 ,

wherein the charging and discharging control device executes zero torque control for operating the second power converter so that a driving force imparted from the second motor generator to the second wheel is set to 0 by using power that is discharged from the second power storage device in a case where the drive mode is the two-wheel drive mode and the value of the second power storage parameter is equal to or larger than the first threshold, and executes the zero torque control by using power that is discharged from the first power storage device through the voltage converter in a case where the drive mode is the two-wheel drive mode and the value of the second power storage parameter is less than the first threshold.

12. The vehicle power supply system according to claim 10 ,

wherein the first power storage device is lower in output weight density and is higher in energy weight density than the second power storage device.

13. The vehicle power supply system according to claim 9 ,

wherein the charging and discharging control device executes zero torque control for operating the second power converter so that a driving force imparted from the second motor generator to the second wheel is set to 0 by using power that is discharged from the second power storage device in a case where the drive mode is the two-wheel drive mode and the value of the second power storage parameter is equal to or larger than the first threshold, and executes the zero torque control by using power that is discharged from the first power storage device through the voltage converter in a case where the drive mode is the two-wheel drive mode and the value of the second power storage parameter is less than the first threshold.

14. The vehicle power supply system according to claim 13 ,

wherein the first power storage device is lower in output weight density and is higher in energy weight density than the second power storage device.

15. The vehicle power supply system according to claim 9 ,

wherein the first power storage device is lower in output weight density and is higher in energy weight density than the second power storage device.

16. The vehicle power supply system according to claim 9 , further comprising a request operating unit capable of being operated when a driver requests power saving driving,

wherein the drive mode setting unit sets the drive mode as the two-wheel drive mode with at least the request operating unit being turned on as condition.

17. The vehicle power supply system according to claim 1 ,

wherein the first power storage device is lower in output weight density and is higher in energy weight density than the second power storage device.

18. The vehicle power supply system according to claim 1 , further comprising a request operating unit capable of being operated when a driver requests power saving driving,

wherein the drive mode setting unit sets the drive mode as the two-wheel drive mode with at least the request operating unit being turned on as condition.

19. The vehicle power supply system according to claim 1 ,

wherein the drive mode setting unit sets the drive mode as the two-wheel drive mode with at least the required driving force being equal to or less than a predetermined driving force as a condition.

20. The vehicle power supply system according to claim 1 ,

wherein the drive mode setting unit sets the drive mode as the all-wheel drive mode during regenerative deceleration in which regenerative electric power occurs in the first and second motor generators, and

the charging and discharging control device charges the first and second power storage devices with the regenerative electric power generated by the first and second motor generators during the regenerative deceleration.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2019
From: OYAMA, KAZUYA; OGUMA, HIROKAZU
To: HONDA MOTOR CO.,LTD.
Reel/Frame 048825/0199 →
Priority Claims (1)
JP JP2018-069974 · Mar 30, 2018 · national
Continuity (1)
Related Publication 20190299807A1 · Oct 3, 2019
Cited By (2)
US 12,491,772 US 12,643,413