IP Library Granted Patent US 9,174,628
Granted Patent B2
US 9,174,628 · App. 14/068,351 · Granted Nov 3, 2015

Method and apparatus for controlling an electrically powered hydraulic pump in a powertrain system

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Quick Facts
Patent No.
US 9,174,628
App. No.
14/068,351
Granted
Nov 3, 2015
Kind
B2
Abstract

A powertrain system includes a transmission employing an electrically-powered hydraulic pump providing pressurized hydraulic fluid to a hydraulic circuit. A method of operating the powertrain system includes monitoring a temperature of the hydraulic pump. In response to the temperature exceeding a threshold temperature, power output from an electrically-powered motor coupled to the hydraulic pump is derated, which includes decreasing rotational speed of the hydraulic pump and maintaining hydraulic pressure in the hydraulic circuit.

Claims (17)

1. Method for operating a powertrain system including a transmission employing an electrically-powered hydraulic pump providing pressurized hydraulic fluid to a hydraulic circuit, comprising:

monitoring a temperature of the hydraulic pump; and

in response to said temperature exceeding a threshold temperature, derating power output from an electrically-powered motor coupled to the hydraulic pump including decreasing rotational speed of the hydraulic pump, decreasing flow of hydraulic fluid to a low-pressure sub-circuit of the hydraulic circuit and maintaining hydraulic pressure in the hydraulic circuit.

2. The method of claim 1 , further comprising decreasing the hydraulic pressure in the hydraulic circuit when the flow of hydraulic fluid to the low-pressure sub-circuit is less than a desired flow for a predetermined period of time.

3. The method of claim 2 , further comprising increasing the flow of hydraulic fluid to the low-pressure sub-circuit coincident with decreasing the hydraulic pressure in the hydraulic circuit when the flow of hydraulic fluid to the low-pressure sub-circuit is less than the desired flow for the period of time.

4. The method of claim 2 , further comprising discontinuing derating power output from the electrically-powered motor coupled to the hydraulic pump including increasing rotational speed of the hydraulic pump, and increasing flow of hydraulic fluid to the low-pressure sub-circuit of the hydraulic circuit when the temperature of the hydraulic pump is less than the threshold temperature.

5. The method of claim 2 , wherein decreasing the hydraulic pressure in the hydraulic circuit comprises reducing clutch torque capacity of applied clutches in the transmission that are fluidly connected to the hydraulic circuit.

6. The method of claim 1 , wherein monitoring the temperature of the hydraulic pump comprises monitoring a temperature of the electrically-powered motor rotatably coupled to the hydraulic pump.

7. The method of claim 1 , wherein the powertrain system further comprises torque machines configured to transfer torque to the transmission and the low-pressure sub-circuit of the hydraulic circuit is configured to effect flow of hydraulic fluid to the torque machines to effect active cooling and lubrication; and

wherein decreasing flow of hydraulic fluid to the low-pressure sub-circuit of the hydraulic circuit comprises decreasing the flow of hydraulic fluid to the torque machines.

8. Method for operating a multi-mode powertrain system including a transmission mechanically coupled to electrically-powered torque machines, said transmission employing an electrically-powered hydraulic pump providing pressurized hydraulic fluid to a hydraulic circuit, the method comprising:

derating power output from an electric motor rotatably coupled to the hydraulic pump including decreasing rotational speed of the hydraulic pump, decreasing flow of hydraulic fluid to a low-pressure sub-circuit of the hydraulic circuit and maintaining hydraulic pressure in the hydraulic circuit when a temperature of the electric motor exceeds a maximum threshold temperature; and

discontinuing the derating power output from the electric motor when the temperature of the electric motor is less than the maximum threshold temperature.

9. The method of claim 8 , further comprising decreasing the hydraulic pressure in the hydraulic circuit when the flow of hydraulic fluid to the low-pressure sub-circuit is less than a desired flow for a period of time and the temperature of the electric motor continues to exceed the maximum threshold temperature.

10. The method of claim 9 , further comprising increasing the flow of hydraulic fluid to the low-pressure sub-circuit coincident with the decreasing the hydraulic pressure in the hydraulic circuit when the flow of hydraulic fluid to the low-pressure sub-circuit is less than the desired flow for the period of time the temperature of the electric motor continues to exceed the maximum threshold temperature.

11. The method of claim 9 , wherein decreasing the hydraulic pressure in the hydraulic circuit comprises reducing clutch torque capacity of applied clutches in the transmission that are fluidly connected to the hydraulic circuit.

12. The method of claim 8 , wherein discontinuing the derating power output from the electric motor when the temperature of the electric motor is less than the maximum threshold temperature comprises increasing rotational speed of the hydraulic pump and increasing flow of hydraulic fluid to the low-pressure sub-circuit of the hydraulic circuit when the temperature of the hydraulic pump is less than the threshold temperature.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Nov 7, 2014
From: WILMINGTON TRUST COMPANY
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 034189/0065 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2014
From: NAQVI, ALI K.; PRIHODA, PATRICK M.; TRYON, ERIC S.
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 033332/0923 →
SECURITY INTEREST Recorded Jun 12, 2014
From: GM GLOBAL TECHNOLOGY OPERATIONS LLC
To: WILMINGTON TRUST COMPANY
Reel/Frame 033135/0440 →