IP Library › Granted Patent US 9,166,515
Granted Patent B2
US 9,166,515 · App. 13/885,852 · Granted Oct 20, 2015

Electrically powered vehicle and method for controlling the same

Inventors: Keiji Kaita (Miyoshi, JP); Teruo Ishishita (Miyoshi, JP); Yuji Nishi (Nagoya, JP); Masaru Takagi (Toyota, JP); Masaki Okamura (Toyota, JP)
Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
H02P27/06B60L11/1803B60L11/1853B60L11/1861B60L11/1868B60L15/2009B60L2210/10B60L2220/14B60L2240/12B60L2240/423B60L2240/545B60L2240/547B60L2240/549Y02T10/642Y02T10/7005Y02T10/7044Y02T10/7066Y02T10/7077Y02T10/7216Y02T10/7275
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Quick Facts
Patent No.
US 9,166,515
App. No.
13/885,852
Granted
Oct 20, 2015
Kind
B2
Abstract

A converter is disposed between a first battery and a power line for transmitting power inputted to and outputted from a motor for traveling. A second battery, on the other hand, is connected to the power line with a relay being interposed therebetween. A control unit controls the relay to be turned on or off in accordance with an operating state of the motor.

Claims (44)

1. An electrically powered vehicle comprising:

a motor for generating vehicle driving force;

a first power storage device;

a second power storage device;

a first power line for transmitting power inputted to and outputted from said motor;

a second power line connected to said first power storage device;

a converter for carrying out bidirectional DC voltage conversion between said first power line and said first power storage device through said second power line;

a first pair of switches connected to said first power line;

a second pair of switches connected to said second power line;

a switch of said first pair of switches connected between said second power storage device and said first power line; and

a control unit for controlling said switch to be turned on or off in accordance with an operating state of said motor.

2. The electrically powered vehicle according to claim 1 , wherein

said control unit calculates a minimum required voltage of said first power line in accordance with a torque and a rotation speed of said motor, and turns off said switch when an output voltage of said second power storage device is lower than said minimum required voltage.

3. The electrically powered vehicle according to claim 2 , wherein

said control unit sets a voltage command value of said first power line in a range not lower than said minimum required voltage in accordance with the torque and the rotation speed of said motor, and turns on said switch when the output voltage of said second power storage device is higher than said voltage command value, while it turns off said switch when said output voltage is lower than said voltage command value.

4. The electrically powered vehicle according to claim 3 , wherein

said control unit turns off said switch when a voltage difference obtained by subtracting said voltage command value from the output voltage of said second power storage device is greater than a predetermined threshold value.

5. The electrically powered vehicle according to claim 1 , wherein

said control unit turns off said switch when a charge level of said second power storage device becomes lower than a predetermined value.

6. The electrically powered vehicle according to claim 1 , wherein

said control unit sets, when said switch is turned off, charge and discharge power upper limit values in entire said first and second power storage devices, based on charge and discharge power upper limit values of said first power storage device and a loss power value in said converter, and sets, when said switch is turned on, the charge and discharge power upper limit values in entire said first and second power storage devices, based on the charge and discharge power upper limit values of said first power storage device, charge and discharge power upper limit values of said second power storage device, and the loss power value in said converter.

7. The electrically powered vehicle according to claim 1 , wherein

a rated value of an output voltage of said first power storage device is lower than a rated value of the output voltage of said second power storage device.

8. The electrically powered vehicle according to claim 1 , wherein

said first power storage device has a power density higher than that of said second power storage device, and

said first power storage device has an energy density lower than that of said second power storage device.

9. A method for controlling an electrically powered vehicle mounted with a motor for generating vehicle driving force,

a first power storage device,

a second power storage device,

a first power line for transmitting power inputted to and outputted from said motor;

a second power line connected to said first storage device

a converter for carrying out bidirectional DC voltage conversion between said first power line and said first power storage device through the second power line,

a first pair of switches connected to said first power line, and a second pair of switches connected to said second power line, the method comprising the steps of:

detecting an output voltage of said second power storage device; and

controlling a switch of the first pair of switches connected between said second power storage device and said first power line to be turned on or off in accordance with an operating state of said motor.

10. The method for controlling an electrically powered vehicle according to claim 9 , further comprising the step of:

calculating a minimum required voltage of said first power line in accordance with a torque and a rotation speed of said motor, wherein

in said step of controlling, said switch is turned off when the output voltage of said second power storage device is lower than said minimum required voltage.

11. The method for controlling an electrically powered vehicle according to claim 10 , wherein

in said step of calculating, a voltage command value of said first power line is set in a range not lower than said minimum required voltage in accordance with the torque and the rotation speed of said motor, and

in said step of controlling, said switch is turned on when the output voltage of said second power storage device is higher than said voltage command value, while said switch is turned off when said output voltage is lower than said voltage command value.

12. The method for controlling an electrically powered vehicle according to claim 11 , wherein

in said step of controlling, said switch is turned off when a voltage difference obtained by subtracting said voltage command value from the output voltage of said second power storage device is greater than a predetermined threshold value.

13. The method for controlling an electrically powered vehicle according to claim 9 , further comprising the step of turning off said switch when a charge level of said second power storage device becomes lower than a predetermined value.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2013
From: KAITA, KEIJI; ISHISHITA, TERUO; NISHI, YUJI; TAKAGI, MASARU; OKAMURA, MASAKI
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 030453/0821 →
Continuity (1)
Related Publication 20130264975A1 · Oct 10, 2013