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Mark S Schang, 64844 Spiroff, Milford, MI 48380

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844 Spiroff, Milford, MI 48380    248-8870471   

Williamston, MI   

Houghton Lake, MI   

Wixom, MI   

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Mark Schang Photo 14

Lead Automated Driving Systems Engineer

Location:
906 Meadowbrook Way, Milford, MI 48381
Industry:
Automotive
Work:
General Motors
Engineering Group Manager - Transmission Software Controls

Lead Automated Driving Systems Engineer
Education:
University of Michigan 1993 - 1998
Masters, Mechanical Engineering
University of Michigan 1988 - 1992
Bachelors, Bachelor of Science, Mechanical Engineering
Skills:
Transmission Controls, Calibration
Mark Schang Photo 15

Mark Schang

Publications & IP owners

Us Patents

System And Method For Automatic Transmission Shift Control

US Patent:
8396637, Mar 12, 2013
Filed:
Sep 8, 2010
Appl. No.:
12/877332
Inventors:
Mark A. Schang - Milford MI, US
Matthew D. Whitton - Howell MI, US
International Classification:
B60W 10/02
F16D 48/06
US Classification:
701 67, 477166, 701 55
Abstract:
A control system for an automatic transmission coupled to an engine by a torque converter includes a torque module and a first clutch control module. The torque module determines an input torque to the transmission based on an output torque of the engine. The first clutch control module adjusts an acceleration of a turbine of the torque converter during a down shift of the transmission based on the input torque. The first clutch control module adjusts the acceleration of the turbine by adjusting a first pressure of fluid supplied to an off-going clutch of the transmission based on the input torque. The first clutch control module adjusts the first pressure based on a mathematical model that relates a torque capacity of the off-going clutch, the input torque, and the acceleration. A method is also provided.

Method And System For Determining An Accumulator Pre-Charge Pressure In A Fluid Circuit

US Patent:
8532892, Sep 10, 2013
Filed:
Jan 11, 2012
Appl. No.:
13/348104
Inventors:
Crystal Nassouri - West Bloomfield MI, US
Mark A. Schang - Milford MI, US
Stephen Lewis Pudvay - Howell MI, US
Assignee:
GM Global Technology Operations LLC - Detroit MI
International Classification:
B60T 11/21
B60T 11/24
US Classification:
701 60, 701 51, 701 61, 701 78, 180307, 180367
Abstract:
A system includes a pump, accumulator, a sensor which measures line pressure in a fluid circuit, and a controller. The controller plots and calculates respective slopes of first and second sets of measured pressure values from the sensor, calculates a slope ratio, and compares the slope ratio to a threshold. The controller also records the pre-charge pressure as the point of intersection of lines representing the slopes when the ratio exceeds the threshold. A control action is executed when the pre-charge pressure drops below a calibrated minimum threshold. A method includes measuring the pressure values, calculating the respective slopes and the slope ratio, comparing the slope ratio to a ratio threshold, recording the point of intersection of lines representing the slopes as an interpolated pre-charge pressure value when the ratio exceeds the threshold, and executing the control action.

Negative Torque Upshift Offgoing Clutch Control Systems And Methods

US Patent:
8579762, Nov 12, 2013
Filed:
Jul 9, 2010
Appl. No.:
12/833267
Inventors:
Mark A Yacoub - Hagerstown MD, US
Matthew D. Whitton - Howell MI, US
Craig J. Hawkins - Howell MI, US
Mark A. Schang - Milford MI, US
Robert L. Williams - Holly MI, US
Christopher Jay Weingartz - Holly MI, US
International Classification:
B60W 10/02
US Classification:
477115
Abstract:
A clutch control system for a vehicle includes a shift command module and an offgoing clutch control module. The shift command module commands an upshift of a clutch-to-clutch transmission when an engine torque is less than a predetermined negative torque. The offgoing clutch control module increases an offgoing clutch pressure above a predetermined apply pressure in response to the command. An offgoing clutch is fully engaged when the offgoing clutch pressure is greater than the predetermined apply pressure.

Quick Skip-At-Sync Control System And Method

US Patent:
2011027, Nov 10, 2011
Filed:
Aug 6, 2010
Appl. No.:
12/851672
Inventors:
Harinath Atmaram - Novi MI, US
Matthew D. Whitton - Howell MI, US
Robert L. Williams - Holly MI, US
Mark A. Schang - Milford MI, US
Assignee:
GM GLOBAL TECHNOLOGY OPERATIONS, INC. - Detroit MI
International Classification:
B60W 10/02
US Classification:
477174
Abstract:
A control system includes a shift stage determination module and a clutch control module. The shift stage determination module determines a duration of a first power-on downshift when a second power-on downshift is requested, where a power-on downshift is a downshift of a transmission that occurs when an accelerator pedal is depressed. The clutch control module completes the first power-on downshift and selectively starts controlling the second power-on downshift before the first power-on downshift ends.

System And Method Of Controlling Crankshaft Torque During A Transmission Shift With Torque Capacity-Based Torque Reduction Range Selection

US Patent:
2013004, Feb 21, 2013
Filed:
Aug 19, 2011
Appl. No.:
13/213334
Inventors:
Christopher E. Whitney - Commerce MI, US
Mark A. Schang - Milford MI, US
Jeffrey M. Kaiser - Highland MI, US
Andrew W. Baur - Whitmore Lake MI, US
Ning Jin - Novi MI, US
Assignee:
GM GLOBAL TECHNOLOGY OPERATIONS LLC - Detroit MI
International Classification:
B60W 20/00
B60W 10/10
B60W 10/06
US Classification:
477 3, 477107, 477101, 477102, 180 65265, 903930
Abstract:
A control system for use with an engine and a transmission in a vehicle is provided that includes at least one controller having a processor with at least one stored algorithm that determines different crankshaft torque capacities associated with different respective torque actuators including a relatively slow torque actuator, such as an airflow actuator, and at least one relatively fast torque actuator, such as a spark actuator or a fuel actuator. The algorithm determines a torque actuation range over which to modify engine torque during an oncoming shift of the transmission. The torque actuation range may be based at least partially on a target gear of the upshift, desired shift duration, and a vehicle operating condition indicative of an operator intent regarding shift duration. Requests for torque modification by use of the torque actuators are then made to provide the torque actuation range.

Method For Crankshaft Torque Modification During Transmission Shifts Using Multiple Torque Actuators And Control System For Same

US Patent:
2013004, Feb 21, 2013
Filed:
Aug 19, 2011
Appl. No.:
13/213337
Inventors:
Mark A. Schang - Milford MI, US
Robert L. Williams - Holly MI, US
David Szpara - Milford MI, US
Assignee:
GM GLOBAL TECHNOLOGY OPERATIONS LLC - Detroit MI
International Classification:
B60W 10/02
B60W 10/10
B60W 10/06
US Classification:
477 78, 477102, 477107
Abstract:
A method of controlling engine crankshaft torque on a vehicle requests crankshaft torque modification using multiple types of torque actuators prior to and during a single commanded shift, such as an upshift. Appropriate levels of torque modification for the request, as well as appropriate times to make determinations regarding actuator type and make crankshaft torque reduction requests are determined in light of timing of key events during the shift.

Vehicle Launch From Standstill Under Adaptive Cruise Conrol

US Patent:
2021040, Dec 30, 2021
Filed:
Jun 25, 2020
Appl. No.:
16/912221
Inventors:
- Detroit MI, US
Mark A. Schang - Milford MI, US
Assignee:
GM GLOBAL TECHNOLOGY OPERATIONS LLC - Detroit MI
International Classification:
B60W 30/14
B60W 40/08
B60W 30/18
Abstract:
In accordance with an exemplary embodiment, a vehicle is provided that includes a body, a drive system, and a control system for controlling the adaptive cruise control functionality for the vehicle. The drive system is disposed within the body, and has adaptive cruise control functionality. The control system includes: one or more sensors disposed onboard the vehicle and configured to obtain sensor data for monitoring a driver of the vehicle while the vehicle is stopped during adaptive cruise control operation while a target vehicle in front of the vehicle has stopped; and a processor coupled to the one or more sensors and configured to provide instructions for automatically resuming movement of the vehicle, when the target vehicle resumes movement, based on the monitoring of the driver of the vehicle.

System And Method For Rationalizing Torque Phase Ratio Values In A Vehicle Propulsion Control System

US Patent:
2018009, Apr 5, 2018
Filed:
Oct 5, 2016
Appl. No.:
15/286020
Inventors:
- Detroit MI, US
Scott D. Biggs - Milford MI, US
Jonathan P. Kish - Royal Oak MI, US
Mark A. Schang - Milford MI, US
Ryan Z. Goode - Howell MI, US
International Classification:
F02D 41/02
F16D 48/06
F16H 63/50
Abstract:
A propulsion system controller for a vehicle that includes a prime mover operable for generating an input torque on an input shaft, and a transmission connected to the prime mover that is configured to receive the input torque from the input shaft and produce an output torque on an output shaft. The controller is programmed to generate a torque phase ratio, rationalize the generated torque phase ratio, and submit a torque request to the prime mover that is based upon a desired output torque divided by the rationalized torque phase ratio.

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