Youla parametrization is a well-established technique in deriving single-input single-output (SISO) and, to a lesser extent, multiple-input multiple-ouput (MIMO) controllers (Youla, D., Bongiorno, J. J., Jr., and Lu, C., 1974, “Singleloop Feedback-Stabilization of Linear Multivariable Dynamical Plants,” Automatica, 10(2), pp. 159–173). However, the utility of this methodology in estimation design, specifically in the framework of controller output observer (COO) (Ozkan, B., Margolis, D., and Pengov, M., 2008, “The Controller Output Observer: Estimation of Vehicle Tire Cornering and Normal Forces,” ASME J. Dyn. Syst., Meas., Control, 130(6), p. 061002), is not established. The fundamental question to be answered is as follows: is it possible to design a deterministic estimation technique using Youla paramertization with the same robust performance, or better, than well-established stochastic estimation techniques such as Kalman filtering? To prove this point, at this stage, a comparative analysis between Youla parametrization in estimation and Kalman filtering is performed through simulations only. In this paper, we provide an overview of Youla parametrization for both control and estimation design. We develop a deterministic SISO and MIMO Youla estimation technique in the framework of COO, and we investigate the utility of this method for two applications in the automotive domain.
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August 2018
Research-Article
Estimation Design Using Youla Parametrization With Automotive Applications
Francis Assadian,
Francis Assadian
Professor
Mem. ASME
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: fassadian@ucdavis.edu
Mem. ASME
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: fassadian@ucdavis.edu
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Alex K. Beckerman,
Alex K. Beckerman
Mem. ASME
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: akbecker@ucdavis.edu
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: akbecker@ucdavis.edu
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Jose Velazquez Alcantar
Jose Velazquez Alcantar
Mem. ASME
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: jvelazquez@ucdavis.edu
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: jvelazquez@ucdavis.edu
Search for other works by this author on:
Francis Assadian
Professor
Mem. ASME
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: fassadian@ucdavis.edu
Mem. ASME
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: fassadian@ucdavis.edu
Alex K. Beckerman
Mem. ASME
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: akbecker@ucdavis.edu
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: akbecker@ucdavis.edu
Jose Velazquez Alcantar
Mem. ASME
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: jvelazquez@ucdavis.edu
Department of Mechanical and
Aerospace Engineering,
University of California, Davis,
Davis, CA 95616
e-mail: jvelazquez@ucdavis.edu
1Corresponding author.
2Present address: Ford Motor Company, Dearborn, MI 48126.
Contributed by the Dynamic Systems Division of ASME for publication in the JOURNAL OF DYNAMIC SYSTEMS, MEASUREMENT,AND CONTROL. Manuscript received November 30, 2017; final manuscript received December 19, 2017; published online March 16, 2018. Editor: Joseph Beaman.
J. Dyn. Sys., Meas., Control. Aug 2018, 140(8): 081015 (11 pages)
Published Online: March 16, 2018
Article history
Received:
November 30, 2017
Revised:
December 19, 2017
Citation
Assadian, F., Beckerman, A. K., and Velazquez Alcantar, J. (March 16, 2018). "Estimation Design Using Youla Parametrization With Automotive Applications." ASME. J. Dyn. Sys., Meas., Control. August 2018; 140(8): 081015. https://doi.org/10.1115/1.4039157
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