We consider an electrohydraulic valve system (EHVS) model with uncertain parameters that may possibly vary with time. This is a nonlinear third order system consisting of two clearly separated subsystems, one for the piston position and the other for the chamber pressure. The nonlinearities involved are flow-pressure characteristics of the solenoid valves, the pressure dynamics of the chamber due to varying volume, and a variable damping nonlinearity. We develop a parametric model that is linear in the unknown parameters of the system using filtering. We deal with a nonlinear parameterization in the variable damping term using the Taylor approximation. We design a parameter identifier, which employs a continuous-time unnormalized least-squares update law with a forgetting factor. This update law exponentially converges to the true parameters under a persistence of excitation condition, which is satisfied due to the periodic regime of operation of EHVS. We present simulation results that show good following of unknown parameters even with the presence of sensor noise.
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November 2011
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Parameter Identification for Electrohydraulic Valvetrain Systems
Miroslav Krstic,
Miroslav Krstic
Professor
Department of Mechanical and Aerospace Engineering,
University of California
, San Diego La Jolla, CA 92093-0411 e-mail:
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Nalin Chaturvedi
Nalin Chaturvedi
Research Engineer
Bosch Research and Technology Center North America
, Palo Alto, CA 94304 e-mail:
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James Gray
Graduate Student
Miroslav Krstic
Professor
Department of Mechanical and Aerospace Engineering,
University of California
, San Diego La Jolla, CA 92093-0411 e-mail:
Nalin Chaturvedi
Research Engineer
Bosch Research and Technology Center North America
, Palo Alto, CA 94304 e-mail: J. Dyn. Sys., Meas., Control. Nov 2011, 133(6): 064502 (8 pages)
Published Online: November 21, 2011
Article history
Received:
April 16, 2009
Revised:
May 3, 2011
Online:
November 21, 2011
Published:
November 21, 2011
Citation
Gray, J., Krstic, M., and Chaturvedi, N. (November 21, 2011). "Parameter Identification for Electrohydraulic Valvetrain Systems." ASME. J. Dyn. Sys., Meas., Control. November 2011; 133(6): 064502. https://doi.org/10.1115/1.4004780
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