This paper introduces a two-scale command shaping strategy for reducing vibrations in conventional and hybrid electric vehicle (HEV) powertrains during engine restart. The approach introduces no additional system components and thus few additional costs. The torque profile from an electric machine (EM) is tailored to start the internal combustion engine (ICE) while minimizing residual vibrations. It is shown that the tailored EM torque profile, composed of a linear combination of constant and time-varying components, results in significant mitigation of powertrain vibrations and smoother ICE startup. The time-varying EM torque component is calculated using an analytical ICE model and a perturbation technique for separating scales, which isolates the ICE nonlinear response. Command shaping is then applied to the linear problem at the remaining scale. Simulation results suggest a promising and straightforward technique for reducing vibrations and improving drivability during ICE restart. Furthermore, two-scale command shaping may also be useful in mitigating other HEV-related drivability issues associated with powertrain mode changes (e.g., blending of hybrid power sources, engaging and disengaging of clutches, etc.).
Skip Nav Destination
Article navigation
September 2017
Research-Article
Two-Scale Command Shaping for Reducing Powertrain Vibration During Engine Restart
J. Justin Wilbanks,
J. Justin Wilbanks
George W. Woodruff
School of Mechanical Engineering,
Georgia Institute of Technology,
Atlanta, GA 30332-0405
e-mail: justin.wilbanks@gatech.edu
School of Mechanical Engineering,
Georgia Institute of Technology,
Atlanta, GA 30332-0405
e-mail: justin.wilbanks@gatech.edu
Search for other works by this author on:
Michael J. Leamy
Michael J. Leamy
Fellow ASME
George W. Woodruff
School of Mechanical Engineering,
Georgia Institute of Technology,
Atlanta, GA 30332-0405
e-mail: michael.leamy@me.gatech.edu
George W. Woodruff
School of Mechanical Engineering,
Georgia Institute of Technology,
Atlanta, GA 30332-0405
e-mail: michael.leamy@me.gatech.edu
Search for other works by this author on:
J. Justin Wilbanks
George W. Woodruff
School of Mechanical Engineering,
Georgia Institute of Technology,
Atlanta, GA 30332-0405
e-mail: justin.wilbanks@gatech.edu
School of Mechanical Engineering,
Georgia Institute of Technology,
Atlanta, GA 30332-0405
e-mail: justin.wilbanks@gatech.edu
Michael J. Leamy
Fellow ASME
George W. Woodruff
School of Mechanical Engineering,
Georgia Institute of Technology,
Atlanta, GA 30332-0405
e-mail: michael.leamy@me.gatech.edu
George W. Woodruff
School of Mechanical Engineering,
Georgia Institute of Technology,
Atlanta, GA 30332-0405
e-mail: michael.leamy@me.gatech.edu
1Corresponding author.
Contributed by the Dynamic Systems Division of ASME for publication in the JOURNAL OF DYNAMIC SYSTEMS, MEASUREMENT, AND CONTROL. Manuscript received February 10, 2016; final manuscript received January 11, 2017; published online June 5, 2017. Assoc. Editor: Junmin Wang.
J. Dyn. Sys., Meas., Control. Sep 2017, 139(9): 091004 (11 pages)
Published Online: June 5, 2017
Article history
Received:
February 10, 2016
Revised:
January 11, 2017
Citation
Justin Wilbanks, J., and Leamy, M. J. (June 5, 2017). "Two-Scale Command Shaping for Reducing Powertrain Vibration During Engine Restart." ASME. J. Dyn. Sys., Meas., Control. September 2017; 139(9): 091004. https://doi.org/10.1115/1.4036034
Download citation file:
Get Email Alerts
Cited By
Design of Attack Resistant Robust Control Based on Intermediate Estimator Approach for Offshore Steel Jacket Structures
J. Dyn. Sys., Meas., Control (September 2025)
Associate Editor's Recognition
J. Dyn. Sys., Meas., Control (July 2025)
Related Articles
Using Constrained Bilinear Quadratic Regulator for the Optimal Semi-Active Control Problem
J. Dyn. Sys., Meas., Control (November,2017)
A Passivity-Based Power-Shaping Control of Building HVAC Systems
J. Dyn. Sys., Meas., Control (November,2017)
Residual Vibration Suppression for Duffing Nonlinear Systems With Electromagnetical Actuation Using Nonlinear Command Shaping Techniques
J. Vib. Acoust (December,2006)
Dynamics and Stability of Phase Controlled Oscillators
J. Dyn. Sys., Meas., Control (July,2016)
Related Chapters
Engineering Design about Electro-Hydraulic Intelligent Control System of Multi Axle Vehicle Suspension
International Conference on Instrumentation, Measurement, Circuits and Systems (ICIMCS 2011)
The Stirling Engine
Air Engines: The History, Science, and Reality of the Perfect Engine
Introduction I: Role of Engineering Science
Fundamentals of heat Engines: Reciprocating and Gas Turbine Internal Combustion Engines