DocumentCode
1159920
Title
Adaptive and Learning Control for SI Engine Model With Uncertainties
Author
Tang, Huajin ; Weng, Larry ; Dong, Zhao Yang ; Yan, Rui
Author_Institution
Agency for Sci., Technol. & Res., Inst. for Infocomm Res., Singapore
Volume
14
Issue
1
fYear
2009
Firstpage
93
Lastpage
104
Abstract
Air-fuel ratio control is a challenging control problem for port-fuel-injected and throttle-body-fuel-injected spark ignition (SI) engines, since the dynamics of air manifold and fuel injection of the SI engines are highly nonlinear and often with unmodeled uncertainties and disturbance. This paper presents nonlinear control approaches for multi-input multi-output engine models, by developing adaptive control and learning control design methods. Theoretical proofs are established that ensure that proposed controllers are able to give asymptotical tracking performance. As a comparison, the method applying global linearizing controller can give accurate tracking for the engine model without uncertainty and disturbance, but it fails to keep tracking performance when uncertainty is incorporated into the system. Adaptive control and learning control approaches are capable of dealing with both constant uncertainty and time-varying periodic uncertainty. Simulation results illustrate the efficacy of the proposed controllers.
Keywords
adaptive control; control system synthesis; internal combustion engines; learning systems; linearisation techniques; time-varying systems; uncertain systems; SI engine; adaptive control; air-fuel ratio control; global linearizing controller; learning control design methods; multiinput multioutput engine; port-fuel-injected spark ignition engines; throttle-body-fuel-injected spark ignition engines; time-varying periodic uncertainty; Adaptive control; Aging; Atmosphere; Fuels; Internal combustion engines; Programmable control; Senior members; Sparks; Timing; Uncertainty; Adaptive control; control engineering; uncertainty;
fLanguage
English
Journal_Title
Mechatronics, IEEE/ASME Transactions on
Publisher
ieee
ISSN
1083-4435
Type
jour
DOI
10.1109/TMECH.2008.2004806
Filename
4783212
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