Title
MPC for a diesel engine air path using an explicit approach for constraint systems
Date Issued
01 December 2007
Access level
metadata only access
Resource Type
conference paper
Author(s)
Ortner P.
Langthaler P.
Ortiz J.V.G.
Universidad Johannes Kepler de Linz
Publisher(s)
IEEE Control Systems Society (CSS)
Abstract
The air path of an internal combustion engine is a classical example of MIMO system with actuator constraints and high dynamic requirements. While the classical approach consists in using simple, decoupled heuristic controllers and empirical limitations, this paper proposes to state the problem in terms of an optimal control problem with input constraints and to solve it in a model based environment. To this end, a recently developed controller design - explicit MPC - is used to calculate the explicit solution of the state feedback control law offline and to store it in tables for online controller selection. The combination of plant and switched controller leads to a piecewise linear and discrete system - a special form of hybrid system. The approach has been tested on a production diesel engine yielding impressive improvements in terms of soot while compared with the basic application. © 2006 IEEE.
Start page
2760
End page
2765
Language
English
OCDE Knowledge area
Ingeniería mecánica
Scopus EID
2-s2.0-36448961948
ISBN
0780397959 9780780397958
Resource of which it is part
Proceedings of the IEEE International Conference on Control Applications
ISBN of the container
0780397959
Conference
Joint 2006 IEEE Conference on Control Applications (CCA), Computer-Aided Control Systems Design Symposium (CACSD) and International Symposium on Intelligent Control (ISIC)
Sources of information: Directorio de Producción Científica Scopus