DocumentCode
105934
Title
Identification and Inverse Torque Control of Hydrodynamic Dynamometers
Author
Passenbrunner, T.E. ; Sassano, M. ; Hirsch, Michele ; del Re, Luigi
Author_Institution
Inst. for Design & Control of Mechatronical Syst., Johannes Kepler Univ. Linz, Linz, Austria
Volume
22
Issue
2
fYear
2014
fDate
Mar-14
Firstpage
607
Lastpage
617
Abstract
Hydrodynamic dynamometers are employed in internal combustion engine (ICE) test benches for the entire range of ICEs, from cart engines to large ship engines. They are inexpensive and characterized by a relatively small moment of inertia. Although nonlinearities and the absence of accurate models make controlling these dynamometers a difficult task, they are currently used almost exclusively for stationary measurements. To overcome this limitation, this paper proposes an inverse torque control based on a Wiener approximation whose parameterization is strongly simplified by choosing a suitable set of basis functions for the nonlinear map. As inverting this nonlinear map would be computationally demanding, it is replaced with a dynamic inversion which - together with the actuator redundancy - allows additional optimality criteria to be incorporated. The performance of the proposed control law is validated by measurements on a test bench and shows significant improvement compared with classical implementations.
Keywords
approximation theory; dynamometers; hydrodynamics; internal combustion engines; nonlinear control systems; optimal control; torque control; ICE test benches; Wiener approximation; actuator redundancy; basis functions; cart engines; control law; dynamic inversion; hydrodynamic dynamometers; identification; internal combustion engine; inverse torque control; moment-of-inertia; nonlinear map; optimality criteria; parameterization; ship engines; stationary measurements; Hydrodynamic dynamometer; inversion of nonlinear static maps; torque control;
fLanguage
English
Journal_Title
Control Systems Technology, IEEE Transactions on
Publisher
ieee
ISSN
1063-6536
Type
jour
DOI
10.1109/TCST.2013.2262531
Filename
6532332
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