IP Library Granted Patent US 8,594,867
Granted Patent B2
US 8,594,867 · App. 12/257,432 · Granted Nov 26, 2013

System architecture for a blended braking system in a hybrid powertrain system

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Quick Facts
Patent No.
US 8,594,867
App. No.
12/257,432
Granted
Nov 26, 2013
Kind
B2
Abstract

An engine and a second power generating device transmit power through a transmission to a driveline to a wheel. A control module determines a regenerative braking axle torque capacity and a regenerative braking torque. Power output from the second power generating device is controlled based upon a regenerative braking axle torque request. A brake control module determines a total braking torque request and generates the regenerative braking axle torque request based upon the total braking torque request, the regenerative braking axle torque capacity, and the regenerative braking torque. The brake control module controls a friction brake.

Claims (56)

1. An apparatus, comprising:

an internal combustion engine mechanically coupled to a transmission device operative to transfer mechanical power between the engine and a second power generating device and an output member mechanically coupled to a driveline to transmit tractive torque to a wheel including an actuable friction brake;

a brake control module operatively connected to the actuable friction brake;

a second control module operatively connected to the internal combustion engine and the transmission device; and

a brake pedal;

the second control module configured to:

determine a regenerative braking axle torque capacity comprising an ability of the transmission device to react torque transferred from the driveline through an applied clutch to the second power generating device, said regenerative braking axle torque capacity limited to a maximum brake output torque,

determine a regenerative braking torque presently applied to the driveline through the output member of the transmission device,

communicate the regenerative braking axle torque capacity and the regenerative braking torque to the brake control module, and

generate a control signal to command a power output from the second power generating device based upon a regenerative braking axle torque request, said regenerative braking axle torque request comprising an optimum brake output torque at the output member; and

the brake control module configured to:

determine a total braking torque request based upon an operator input to the brake pedal,

generate the regenerative braking axle torque request based upon the total braking torque request, the regenerative braking axle torque capacity, and the regenerative braking torque presently applied to the driveline,

generate a control signal to control the actuable friction brake based upon a difference between the total braking torque request and the regenerative braking torque presently applied to the driveline, and

monitor a speed of the wheel and phase out the regenerative braking axle torque request when the speed of the wheel approaches zero; and set the regenerative braking axle torque request to zero torque when a gear selector switch is set to a reverse gear.

2. The apparatus of claim 1 , further comprising the second control module configured to generate a control signal to command a power output from the second power generating device based upon-the regenerative braking axle torque request and limited by the regenerative braking axle torque capacity.

3. An apparatus, comprising:

an internal combustion engine;

an electric machine;

a transmission device including selectively applied clutches and an output member;

the internal combustion engine and the electric machine mechanically coupled to the transmission device;

the output member mechanically coupled to a driveline;

the driveline including a wheel including an actuable friction brake;

the transmission configured to react torque from the driveline to the output member through the selectively applied clutches to the electric machine;

a brake control module operatively connected to the actuable friction brake;

a second control module operatively connected to the internal combustion engine and the transmission; and

a brake pedal;

the second control module configured to:

determine a regenerative braking axle torque capacity,

determine a regenerative braking axle torque capacity comprising an ability of the transmission device to react torque transferred from the driveline through the selectively applied clutches to the electric machine, said regenerative braking axle torque capacity limited to a maximum brake output torque,

determine a magnitude of torque reacted from the driveline to the output member of the transmission device,

communicate the regenerative braking axle torque capacity and the magnitude of the torque reacted from the driveline to the brake control module, and

generate a control signal to command a power output from the electric machine based upon a regenerative braking axle torque request, said regenerative braking axle torque request comprising an optimum brake output torque at the output member;

the brake control module configured to:

determine a total braking torque request based upon an operator input to the brake pedal,

generate the regenerative braking axle torque request based upon the total braking torque request, the regenerative braking axle torque capacity, and the magnitude of the reacted torque, said regenerative braking axle torque request comprising an optimum brake output torque at the output member,

generate a control signal to control the actuable friction brake based upon a difference between the total braking torque request and the magnitude of the reacted torque, and

monitor a speed of the wheel and phase out the regenerative braking axle torque request when the speed of the wheel approaches zero; and set the regenerative braking axle torque request to zero torque when a gear selector switch is set to a reverse gear.

4. The apparatus of claim 3 , further comprising the second control module configured to generate a control signal to command a power output from the electric machine based upon the regenerative braking axle torque request and limited by the regenerative braking axle torque capacity.

5. The apparatus of claim 3 , further comprising

the electric machine operative to transform the torque reacted from the driveline to electric power; and

an energy storage device connected to the electric machine operative to store the electric power as electric energy potential.

6. A method to operate a powertrain system including an engine mechanically coupled to a transmission and a power generating device electrically connected to an energy storage device, the transmission operative to transfer mechanical power between the engine and the power generating device and an output member coupled to a driveline to transmit tractive torque to a wheel, the wheel including an actuable friction brake and the power generating device operative to react tractive torque transferred from the wheel through the driveline to the transmission said method being performed by a microprocessor, the method comprising:

monitoring an operator input to a brake pedal with a first control module;

determining a regenerative braking axle torque capacity with a second control module, said regenerative braking axle torque capacity comprising an ability of the transmission device to react torque transferred from the driveline through the selectively applied clutches to the electric machine, said regenerative braking axle torque capacity limited to a maximum brake output torque;

determining a regenerative braking torque transmitted between the driveline and the output member of the transmission device with the second control module;

communicating the regenerative braking axle torque capacity and the regenerative braking torque to the first control module;

generating a control signal to command a power output from the second power generating device based upon a regenerative braking axle torque request with the second control module, said regenerative braking axle torque request comprising an optimum brake output torque at the output member;

determining a total braking torque request based upon the operator input to the brake pedal with the first control module;

generating the regenerative braking axle torque request based upon the total braking torque request, the regenerative braking axle torque capacity, and the regenerative braking torque with the first control module;

generating a control signal to control the actuable friction brake based upon a difference between the total braking torque request and the regenerative braking torque with the first control module;

monitoring a speed of the wheel and phasing out the regenerative braking axle torque request when the speed of the wheel approaches zero; and setting the regenerative braking axle torque request to zero torque when a gear selector switch is set to a reverse gear.

7. The method of claim 6 , further comprising

connecting an energy storage device to the electric machine;

transforming the regenerative braking torque transmitted between the driveline and the output member of the transmission device to electric power; and

storing the electric power as electric energy potential.

Assignments (17)
MASTER TRANSACTION AGREEMENT Recorded Mar 8, 2016
From: CHRYSLER LLC
To: NEW CARCO ACQUISITION LLC
Reel/Frame 038031/0127 →
CHANGE OF NAME Recorded Mar 8, 2016
From: NEW CARCO ACQUISITION LLC
To: CHRYSLER GROUP LLC
Reel/Frame 038032/0799 →
CHANGE OF NAME Recorded Mar 8, 2016
From: CHRYSLER GROUP LLC
To: FCA US LLC
Reel/Frame 038033/0025 →
CHANGE OF NAME Recorded Apr 30, 2015
From: CHRYSLER GROUP LLC
To: FCA US LLC
Reel/Frame 035553/0356 →
RELEASE OF SECURITY INTEREST Recorded Nov 7, 2014
From: WILMINGTON TRUST COMPANY
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 034189/0065 →
CHANGE OF NAME Recorded Feb 10, 2011
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 025781/0245 →
SECURITY AGREEMENT Recorded Nov 8, 2010
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: WILMINGTON TRUST COMPANY
Reel/Frame 025324/0515 →
RELEASE OF SECURITY INTEREST Recorded Nov 5, 2010
From: UAW RETIREE MEDICAL BENEFITS TRUST
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 025315/0046 →
RELEASE OF SECURITY INTEREST Recorded Nov 4, 2010
From: UNITED STATES DEPARTMENT OF THE TREASURY
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 025245/0909 →
SECURITY AGREEMENT Recorded Aug 28, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: UAW RETIREE MEDICAL BENEFITS TRUST
Reel/Frame 023162/0237 →
SECURITY AGREEMENT Recorded Aug 27, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: UNITED STATES DEPARTMENT OF THE TREASURY
Reel/Frame 023156/0313 →
RELEASE OF SECURITY INTEREST Recorded Aug 21, 2009
From: UNITED STATES DEPARTMENT OF THE TREASURY
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 023126/0914 →
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 023155/0769 →
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 022554/0538 →
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 Jan 27, 2009
From: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.; DAIMLER AG; CHRYSLER LLC; BAYERISCHE MOTOREN WERKE AKTIENGESELLSCHAFT
Reel/Frame 022163/0249 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2008
From: HEAP, ANTHONY H.; CAWTHORNE, WILLIAM R.; KARNJATE, TIMOTHY M.; MANOSH, WILLIAM K.; MCGRATH, SEAMUS T.
To: GM GLOBAL TECHNOLOGY OPERATIONS, INC.
Reel/Frame 021729/0779 →