IP Library Granted Patent US 9,821,798
Granted Patent B2
US 9,821,798 · App. 14/741,846 · Granted Nov 21, 2017

Hybrid vehicle engine starts

Inventors: Xiaoyong Wang (Novi, MI); Wei Liang (Farmington Hills, MI); Rajit Johri (Ann Arbor, MI); Mark Steven Yamazaki (Canton, MI); Ming Lang Kuang (Canton, MI); Ryan Abraham McGee (Ann Arbor, MI)
Assignee: Ford Global Technologies, LLC
B60W20/40B60W10/02B60W10/023B60W10/06B60W10/08B60W20/10F02N11/08F02N11/0803B60W2540/10B60W2710/06B60Y2300/73B60Y2400/426F02N5/04F02N11/00F02N11/0818F02N15/022F02N2200/023F02N2200/101F02N2300/2002Y02T10/6286Y10S903/902Y10S903/93
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Quick Facts
Patent No.
US 9,821,798
App. No.
14/741,846
Granted
Nov 21, 2017
Kind
B2
Abstract

A vehicle includes a starter motor, an engine having an output mechanically coupled to the starter motor, a transmission having an input, and an electric machine mechanically coupled to the transmission input. The vehicle further includes a clutch configured to mechanically couple the electric machine and the output of the engine, and at least one controller. The at least one controller is programmed to initiate an engine start based on driver demand. The controller is further configured to enable pressure to the clutch for the engine start if driver demand is less than a calibratable torque value or enable the starter motor for the engine start if the driver demand is greater than a calibratable torque value. The controller may lock the clutch to the output of the engine in response to the speed of the engine being approximately equal to the speed of the electric machine.

Claims (20)

1. A powertrain method comprising:

by a controller,

responsive to an engine start request and an engine temperature greater than a threshold, increasing a clutch pressure start an engine without a starter motor,

responsive to an impeller speed greater than a calibratable speed, reducing the clutch pressure, and

responsive to an engine start request and the engine temperature less than the threshold, operating the starter motor to start the engine without an electric machine.

2. The powertrain method of claim 1 wherein the engine temperature is engine coolant temperature.

3. The powertrain method of claim 1 wherein the engine temperature is transmission oil temperature.

4. The powertrain method of claim 1 further comprising, responsive to driver demand torque less than a predefined torque value, reducing the clutch pressure to reduce torque transferred to zero.

5. The powertrain method of claim 1 further comprising, responsive to driver demand torque greater than a predefined torque value, maintaining the clutch pressure to maintain torque transferred.

6. The powertrain method of claim 1 wherein the calibratable speed is 2100 RPM.

7. A powertrain comprising:

an engine; and

a controller programmed to

responsive to a start request and an engine temperature greater than a threshold, increase a clutch pressure to start the engine without a starter motor,

responsive to an impeller speed greater than a calibratable speed, reduce the clutch pressure, and

responsive to a start request and the engine temperature less than the threshold, operate the starter motor to start the engine without an electric machine.

8. The powertrain of claim 7 wherein the controller is further programmed to, responsive to driver demand torque less than a predefined torque value, reduce the clutch pressure to reduce torque transferred to zero.

9. The powertrain of claim 7 wherein the controller is further programmed to, responsive to driver demand torque greater than a predefined torque value, maintain the clutch pressure to maintain torque transferred.

10. The powertrain of claim 7 wherein the engine temperature is engine coolant temperature.

11. The powertrain of claim 7 wherein the engine temperature is transmission oil temperature.

Continuity (2)
Division 14057311 · Oct 18, 2013
Related Publication 20150283997A1 · Oct 8, 2015