IP Library Granted Patent US 7,581,606
Granted Patent B2
US 7,581,606 · App. 11/666,334 · Granted Sep 1, 2009

Vehicular control device

Assignee: Toyota Jidosha Kabushiki Kaisha
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Quick Facts
Patent No.
US 7,581,606
App. No.
11/666,334
Granted
Sep 1, 2009
Kind
B2
Abstract

An ECU executes a program including the steps of: if an accelerator pedal position P is larger than a predetermined accelerator pedal position, calculating an output that an MG( 2 ) is required to provide; calculating an output that a capacitor and a battery can supply; calculating an output that can be supplied to MG( 1 ), by subtracting the output that the MG( 2 ) is required to provide from the output that the capacitor and the battery can supply; calculating a torque that each MG is instructed to output, as based on the output that can be supplied to MG( 1 ) and the output that an MG( 2 ) is required to provide; and controlling inverters ( 1 ) and ( 2 ), as based on the torque that each MG is instructed to output, to accelerate the vehicle.

Claims (32)

1. A control device for a vehicle, comprising:

an engine;

a first rotating electric machine coupled to the engine;

a second rotating electric machine coupled to the engine;

a battery;

a capacitor provided electrically in parallel with the battery;

a first calculation unit for calculating an output that the second rotating electric machine is required to provide;

a second calculation unit for calculating an output provided from the battery and the capacitor;

a third calculation unit for calculating an output of the first rotating electric machine by subtracting the output that the second rotating electric machine is required to provide from the output provided from the battery and the capacitor; and

a control unit causing the battery and the capacitor to supply power to increase a number of rotations of the second rotating electric machine and also controlling the first rotating electric machine and the second rotating electric machine to prevent the first rotating electric machine from acting as a load of the engine when the vehicle is accelerated as a driving force of the engine is transmitted to a driving wheel, wherein the control unit controls the first rotating electric machine, as based on the output of the first rotating electric machine, to increase a number of rotations of the engine.

2. The control device for a vehicle, according to claim 1 , wherein when said engine attains a predetermined number of rotations said control unit controls said first rotating electric machine to decrease a torque generated from said first rotating electric machine.

3. The control device for a vehicle, according to claim 1 , further comprising a power split device including a sun gear, a pinion gear engaging with said sun gear, a carrier supporting said pinion gear rotatably as desired, and a ring gear engaging with said pinion gear, wherein:

said engine is coupled to said carrier;

said first rotating electric machine is coupled to said sun gear; and

said second rotating electric machine is coupled to said ring gear.

4. The control device for a vehicle, according to claim 1 , wherein said rotating electric machine is a motor generator.

5. A control device for a vehicle, comprising:

an engine;

a first rotating electric machine coupled to the engine;

a second rotating electric machine coupled to the engine;

a battery;

a capacitor provided electrically in parallel with the battery;

means for calculating an output that the second rotating electric machine is required to provide;

means for calculating an output provided from the battery and the capacitor;

means for calculating an output of the first rotating electric machine by subtracting the output that the second rotating electric machine is required to provide from the output provided from the battery and the capacitor; and

control means for causing the battery and the capacitor to supply power to increase a number of rotations of the second rotating electric machine and also controlling the first rotating electric machine and the second rotating electric machine to prevent the first rotating electric machine from acting as a load of the engine when the vehicle is accelerated as a driving force of the engine is transmitted to a driving wheel, wherein the control means includes means for controlling the first rotating electric machine, as based on the output of the first rotating electric machine, to increase a number of rotations of the engine.

6. The control device for a vehicle, according to claim 5 , wherein said control means further includes means responsive to said engine having attained a predetermined number of rotations, for controlling said first rotating electric machine to decrease a torque generated from said first rotating electric machine.

7. The control device for a vehicle, according to claim 5 , further comprising a power split device including a sun gear, a pinion gear engaging with said sun gear, a carrier supporting said pinion gear rotatably as desired, and a ring gear engaging with said pinion gear, wherein:

said engine is coupled to said carrier;

said first rotating electric machine is coupled to said sun gear; and

said second rotating electric machine is coupled to said ring gear.

8. The control device for a vehicle, according to claim 5 , wherein said rotating electric machine is a motor generator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2007
From: ISHIKAWA, TETSUHIRO; YOSHIDA, HIROSHI
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 019264/0815 →
Priority Claims (1)
JP 2004-338788 · Nov 24, 2004 · national
Continuity (1)
Related Publication 20080115985A1 · May 22, 2008