IP Library Granted Patent US 7,647,154
Granted Patent B2
US 7,647,154 · App. 11/861,506 · Granted Jan 12, 2010

Method and control architecture for optimization of cylinder deactivation selection and engine input torque for a hybrid powertrain system

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Quick Facts
Patent No.
US 7,647,154
App. No.
11/861,506
Granted
Jan 12, 2010
Kind
B2
Abstract

A method and article of manufacture are provided for operating an internal combustion engine adapted to transmit torque to a hybrid transmission. The method comprises determining engine input torque transmittable to the hybrid transmission for a plurality of engine states the engine states comprising an all-cylinder operation and a cylinder-deactivation operation. Costs are determined for operating the engine and hybrid transmission in the engine states to substantially meet an operator torque request. The engine state is controlled to one of the all-cylinder operation and the cylinder-deactivation operation based upon the costs.

Claims (21)

1. Method for operating an internal combustion engine adapted to transmit torque to a hybrid transmission, comprising:

determining engine input torque transmittable to the hybrid transmission for a plurality of engine states the engine states comprising an all-cylinder state and a cylinder-deactivation state wherein fewer than all cylinders remain active;

executing a one-dimensional search engine over a range of engine input torques for each of the all-cylinder engine state and the cylinder-deactivation state to determine a minimum powertrain system operating cost and an associated engine input torque to meet an operator torque request for each of the all-cylinder engine state and the cylinder-deactivation state; and

controlling the engine state to one of the all-cylinder state and the cylinder-deactivation state based upon the minimum powertrain system operating costs;

wherein executing the one-dimensional search engine comprises iteratively selecting parametric values for the engine input torque over the range of engine input torques, and, executing a system equation to determine associated motor torques for operating the hybrid transmission to meet the operator torque request and executing a cost function for each of the iteratively selected parametric values for engine input torque and the associated motor torques to determine a powertrain system operating cost.

2. The method of claim 1 , further comprising controlling the engine state to one of the normal state and the cylinder-deactivation state based upon the powertrain system operating costs.

3. The method of claim 1 , further comprising determining the engine input torque transmittable to the hybrid transmission for an engine fuel-cutoff state and an engine fuel-cutoff-cylinder deactivation state.

4. The method of claim 3 , wherein determining costs for operating the engine and hybrid transmission in the engine states to substantially meet the operator torque request comprises evaluating powertrain system operating cost and an associated engine input torque to substantially meet the operator torque request.

5. The method of claim 4 , comprising executing a system equation and a cost function for an engine-fuel-cutoff engine input torque and executing the system equation and the cost function for an engine input torque for the engine fuel-cutoff-cylinder deactivation state to determine powertrain system operating costs.

6. The method of claim 5 , further comprising controlling the engine state to one of the engine fuel-cutoff state and the engine fuel-cutoff-cylinder deactivation state based upon the costs at engine fuel-cutoff operation.

7. The method of claim 1 , wherein the engine input torque transmittable to the hybrid transmission for each of the engine states is determinable based upon the operator torque request, engine operating conditions, and engine operating constraints.

8. The method of claim 1 , further comprising determining engine input torque transmittable to the hybrid transmission for each of a plurality of engine states based upon a current operating range of the hybrid transmission.

9. The method of claim 8 , wherein the current operating range of the hybrid transmission comprises one of a plurality of fixed gear modes and two continuously variable modes.

10. The method of claim 9 , wherein the engine states comprise a normal engine operating state, a cylinder deactivation state, an engine fuel-cutoff state, and, an engine fuel-cutoff state with cylinder deactivation.

11. Method for operating a hybrid powertrain, the hybrid powertrain comprising an internal combustion engine, an energy storage system, an electric machine, and an electro-mechanical transmission, the energy storage system and electric machine electrically-operatively coupled for power flow therebetween; and, the engine, electric machine, and the electro-mechanical transmission mechanically-operatively coupled to transmit power therebetween to transmit torque to an output, the method comprising:

determining allowable engine states and an operator torque request;

determining engine input torque transmittable to the electro-mechanical transmission for engine states comprising an all-cylinder operation and a cylinder-deactivation operation wherein fewer than all cylinders remain active;

executing a one-dimensional search engine over a range of engine input torques for each of the all-cylinder engine state and the cylinder-deactivation state to determine a minimum powertrain system operating cost and an associated engine input torque to meet an operator torque request for each of the all-cylinder engine state and the cylinder-deactivation state; and

controlling the engine state to one of the engine states comprising an all-cylinder operation and a cylinder-deactivation operation based upon the costs;

wherein executing the one-dimensional search engine comprises iteratively selecting parametric values for the engine input torque over the range of engine input torques, and, executing a system equation to determine associated motor torques for operating the hybrid transmission to meet the operator torque request and executing a cost function for each of the iteratively selected parametric values for engine input torque and the associated motor torques to determine a powertrain system operating cost.

12. The method of claim 11 , wherein the engine input torque for each engine state is determined based upon an engine input speed to the transmission, a transmission output speed, a current operating range state of the transmission, an operator torque request, and available power from an electrical storage device operatively connected to the electrical machine.

Assignments (12)
RELEASE OF SECURITY INTEREST Recorded Nov 7, 2014
From: WILMINGTON TRUST COMPANY
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 034185/0587 →
CHANGE OF NAME Recorded Feb 10, 2011
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 025781/0035 →
SECURITY AGREEMENT Recorded Nov 8, 2010
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: WILMINGTON TRUST COMPANY
Reel/Frame 025324/0057 →
RELEASE OF SECURITY INTEREST Recorded Nov 5, 2010
From: UAW RETIREE MEDICAL BENEFITS TRUST
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 025314/0946 →
RELEASE OF SECURITY INTEREST Recorded Nov 4, 2010
From: UNITED STATES DEPARTMENT OF THE TREASURY
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 025245/0780 →
SECURITY AGREEMENT Recorded Aug 28, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: UAW RETIREE MEDICAL BENEFITS TRUST
Reel/Frame 023162/0187 →
SECURITY AGREEMENT Recorded Aug 27, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: UNITED STATES DEPARTMENT OF THE TREASURY
Reel/Frame 023156/0215 →
RELEASE OF SECURITY INTEREST Recorded Aug 21, 2009
From: CITICORP USA, INC. AS AGENT FOR BANK PRIORITY SECURED PARTIES; CITICORP USA, INC. AS AGENT FOR HEDGE PRIORITY SECURED PARTIES
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 023155/0880 →
RELEASE OF SECURITY INTEREST Recorded Aug 20, 2009
From: UNITED STATES DEPARTMENT OF THE TREASURY
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 023124/0670 →
SECURITY AGREEMENT Recorded Apr 16, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: CITICORP USA, INC. AS AGENT FOR BANK PRIORITY SECURED PARTIES; CITICORP USA, INC. AS AGENT FOR HEDGE PRIORITY SECURED PARTIES
Reel/Frame 022554/0479 →
SECURITY AGREEMENT Recorded Feb 4, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: UNITED STATES DEPARTMENT OF THE TREASURY
Reel/Frame 022201/0405 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2007
From: HEAP, ANTHONY H.
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 019879/0248 →