The purpose of this paper is to develop a comprehensive nonlinear model of a typical direct acting solenoid valves utilized for clutch control in wet dual clutch transmissions. To do so, mathematical models of the integrated electrohydraulic solenoid valve and wet clutch piston assembly are developed in the Simulink environment of Matlab. Through simulation the operating characteristics of the control valve are analyzed, demonstrating that the valve achieves dual functionalities of high flow and accurate pressure control depending on demands. This is realized through the designed force balancing of the valve spool. The dependency of the system to system variables on input pressure and the influence of air content on dynamic response of the valve are investigated. The resilience of output pressure is demonstrated to these variables, indicating strong system reliability. Finally, the model is then validated using in situ experimental testing on a powertrain test rig. The comparison of experimental and simulated results for steady state pressure as well as step and ramp input responses demonstrate good agreement.
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September 2014
Research-Article
Nonlinear Modeling and Analysis of Direct Acting Solenoid Valves for Clutch Control
Paul D. Walker,
Paul D. Walker
1
School of Electrical, Mechanical
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
e-mail: paul.walker@uts.edu.au
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
University of Technology
, Sydney,15 Broadway
,Ultimo, NSW 2007
, Australia
e-mail: paul.walker@uts.edu.au
1Corresponding author.
Search for other works by this author on:
Bo Zhu,
Bo Zhu
School of Electrical, Mechanical
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
University of Technology
, Sydney,15 Broadway
,Ultimo, NSW 2007
, Australia
BAIC Motor Electric Vehicle Co. Ltd
,DaXing District
,Beijing 102606
, China
Search for other works by this author on:
Nong Zhang
Nong Zhang
School of Electrical, Mechanical
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
University of Technology
, Sydney,15 Broadway
,Ultimo, NSW 2007
, Australia
Search for other works by this author on:
Paul D. Walker
School of Electrical, Mechanical
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
e-mail: paul.walker@uts.edu.au
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
University of Technology
, Sydney,15 Broadway
,Ultimo, NSW 2007
, Australia
e-mail: paul.walker@uts.edu.au
Bo Zhu
School of Electrical, Mechanical
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
University of Technology
, Sydney,15 Broadway
,Ultimo, NSW 2007
, Australia
BAIC Motor Electric Vehicle Co. Ltd
,DaXing District
,Beijing 102606
, China
Nong Zhang
School of Electrical, Mechanical
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
and Mechatronic Systems,
Faculty of Engineering
and Information Technology,
University of Technology
, Sydney,15 Broadway
,Ultimo, NSW 2007
, Australia
1Corresponding author.
Contributed by the Dynamic Systems Division of ASME for publication in the JOURNAL OF DYNAMIC SYSTEMS, MEASUREMENT, AND CONTROL. Manuscript received August 2, 2013; final manuscript received May 21, 2014; published online July 10, 2014. Assoc. Editor: Shankar Coimbatore Subramanian.
J. Dyn. Sys., Meas., Control. Sep 2014, 136(5): 051023 (9 pages)
Published Online: July 10, 2014
Article history
Received:
August 2, 2013
Revision Received:
May 21, 2014
Citation
Walker, P. D., Zhu, B., and Zhang, N. (July 10, 2014). "Nonlinear Modeling and Analysis of Direct Acting Solenoid Valves for Clutch Control." ASME. J. Dyn. Sys., Meas., Control. September 2014; 136(5): 051023. https://doi.org/10.1115/1.4027798
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