DocumentCode :
74782
Title :
Adaptive Tracking Control of a Common Rail Injection System for Gasoline Engines: A Discrete-Time Integral Minimal Control Synthesis Approach
Author :
Montanaro, Umberto ; di Gaeta, Alessandro ; Giglio, V.
Author_Institution :
Ist. Motori, Naples, Italy
Volume :
21
Issue :
5
fYear :
2013
fDate :
Sept. 2013
Firstpage :
1940
Lastpage :
1948
Abstract :
Over the last decade, gasoline direct injection engines have proven to be a promising solution to reduce both emission and fuel consumption. The achievement of superior performance strongly relies on its fuel injection system based on the common rail (CR) device. In order to tame the CR pressure dynamics without any a priori knowledge of the plant parameters, we design a novel model reference adaptive control strategy that extends the discrete-time minimal control synthesis algorithm. Indeed, an explicit discrete-time adaptive integral action is added to improve closed-loop performance. Experimental results support the analytical proof of stability, and confirm the effectiveness of the novel algorithm to solve both the regulation and the tracking control problem in a wide range of working conditions. The closed-loop performance is quantitatively evaluated via engineering indices.
Keywords :
adaptive control; closed loop systems; control system synthesis; discrete time systems; internal combustion engines; rails; stability; CR device; CR pressure dynamics; adaptive tracking control; analytical stability proof; closed-loop performance improvement; common rail device; common rail injection system; discrete-time integral minimal control synthesis approach; emission reduction; engineering indices; explicit discrete-time adaptive integral action; fuel consumption reduction; fuel injection system; gasoline direct injection engines; model reference adaptive control strategy design; plant parameters; quantitative evaluation; regulation problem; tracking control problem; working conditions; Adaptation models; Employee welfare; Engines; Fuels; Heuristic algorithms; Manifolds; Rails; Automotive control; common rail (CR); discrete-time model reference adaptive control;
fLanguage :
English
Journal_Title :
Control Systems Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6536
Type :
jour
DOI :
10.1109/TCST.2012.2220772
Filename :
6359990
Link To Document :
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