IP Library › Granted Patent US 10,011,263
Granted Patent B2
US 10,011,263 · App. 14/710,359 · Granted Jul 3, 2018

Method and system for improving hybrid vehicle shifting

Inventors: Jeffrey Allen Doering (Canton, MI); Dennis Craig Reed (Dexter, MI); Alex O'Connor Gibson (Ann Arbor, MI); Gregory Michael Pietron (Canton, MI); James William Loch McCallum (Ann Arbor, MI)
Assignee: Ford Global Technologies, LLC
B60W20/108B60K6/48B60W10/02B60W10/023B60W10/026B60W10/11B60W10/115B60W20/10B60W20/15B60W20/30B60W30/19B60W30/20B60K2006/4825B60W2510/0266B60W2510/0695B60W2510/088B60W2710/027B60W2710/1005Y02T10/6252Y10S903/93Y10T477/26
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Quick Facts
Patent No.
US 10,011,263
App. No.
14/710,359
Granted
Jul 3, 2018
Kind
B2
Abstract

A method and a system for improving operation of a hybrid vehicle are presented. In one example, torque converter impeller torque from beginning to end of transmission shifting is adjusted in response to variable driveline inertia. The approach may improve transmission shifting and reduce driveline torque disturbances.

Claims (21)

1. A hybrid powertrain system, comprising:

a drivetrain including an engine;

a transmission including a torque converter; and

a controller including executable instructions stored in non-transitory memory for operating the drivetrain with a first inertia and adjusting a torque converter impeller torque during transmission gear shifting in response to the first inertia and operating the drivetrain with a second inertia and adjusting the torque converter impeller torque during transmission gear shifting in response to the second inertia, where the first inertia does not include an inertia of the engine, and where the torque converter impeller torque is based on an offset that is related to driveline spin losses.

2. The hybrid powertrain system of claim 1 , where the first inertia includes an inertia of a driveline integrated starter/generator (DISG) and an inertia of a portion of a driveline disconnect clutch, and further comprising:

the driveline disconnect clutch, and

additional executable instructions for recording a difference between a desired transmission torque when the driveline disconnect clutch is closed and a desired transmission torque when the driveline disconnect clutch is open, and adjusting a torque source output based on the difference.

3. The hybrid powertrain system of claim 1 , where the second inertia includes the inertia of the engine and an inertia of a DISG, and further comprising:

adjusting the torque converter impeller torque during transmission gear shifting while operating the drivetrain with the first inertia in further response to torque converter impeller acceleration, and

adjusting the torque converter impeller torque during transmission gear shifting while operating the drivetrain with the second inertia in further response to torque converter impeller acceleration.

4. The hybrid powertrain system of claim 3 , where the second inertia includes a total inertia of a driveline disconnect clutch.

5. The hybrid powertrain system of claim 4 , where the driveline disconnect clutch is in an open state.

6. The hybrid powertrain system of claim 5 , where the driveline disconnect clutch is in a closed state when the drivetrain is operated with the second inertia.

7. A hybrid powertrain system, comprising:

a drivetrain including an engine and a transmission; and

a controller including executable instructions stored in non-transitory memory for operating the drivetrain with a first inertia and adjusting a first torque converter impeller torque during transmission gear shifting in response to the first inertia, capturing the first torque converter impeller torque in controller memory in response to a request to close a driveline disconnect clutch, transitioning from the first torque converter impeller torque to a second torque converter impeller torque, and operating the drivetrain with a second inertia and adjusting the second torque converter impeller torque during transmission gear shifting in response to the second inertia after the request to close the driveline disconnect clutch, where the second torque converter impeller torque is based on the second inertia, and where the second torque converter impeller torque is further based on a final drive ratio and an offset that is related to driveline spin losses.

8. The hybrid powertrain system of claim 7 , where the first torque converter impeller torque is based on the first inertia, further comprising additional instructions for capturing a difference between a desired transmission torque when the driveline disconnect clutch is closed and a desired transmission torque when the driveline disconnect clutch is open, and adjusting a torque source based on the difference.

9. The hybrid powertrain system of claim 7 , where transitioning from the first torque converter impeller torque to the second torque converter impeller torque includes ramping the first torque converter impeller torque to the second torque converter impeller torque.

10. The hybrid powertrain system of claim 7 , where adjusting the second torque converter impeller torque during transmission gear shifting includes accounting for a change in transmission gear ratio.

11. The hybrid powertrain system of claim 7 , further comprising additional instructions for providing the second torque converter impeller torque while a motor in the drivetrain is converting driveline torque into electrical energy.

12. The hybrid powertrain system of claim 7 , where the second torque converter impeller torque is provided by the engine and a motor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2015
From: DOERING, JEFFREY ALLEN; REED, DENNIS CRAIG; GIBSON, ALEX O'CONNOR; PIETRON, GREGORY MICHAEL; MCCALLUM, JAMES WILLIAM LOCH
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 035621/0597 →
Continuity (2)
Division 13710257 · Dec 10, 2012
Related Publication 20150239462A1 · Aug 27, 2015