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AuthorPakravesh, Hallas
AuthorDubljevic, Stevan
AuthorHayes, Robert E.
AuthorForbes, J. Fraser
AuthorAksikas, Ilyasse
Available date2024-03-18T06:08:41Z
Publication Date2015
Publication Name2015 19th International Conference on System Theory, Control and Computing, ICSTCC 2015 - Joint Conference SINTES 19, SACCS 15, SIMSIS 19
ResourceScopus
URIhttp://dx.doi.org/10.1109/ICSTCC.2015.7321336
URIhttp://hdl.handle.net/10576/53124
AbstractThis paper proposes a method to synthesize an optimal controller for the SCR section of the diesel exhaust after-treatment system, which is based on a system model consisting of coupled hyperbolic and parabolic partial differential equations (PDEs). This results in a boundary control problem, where the control objectives are to reduce the amount of NOx emissions and ammonia slip to the fullest extent possible using the inlet concentration of ammonia as the manipulated variable. The proposed method combines the method of characteristics and spectral decomposition to produce a non-linear model predictive control (NMPC) approach. The results show that the proposed NMPC is able to achieve a very high level of control performance in terms of NOx and ammonia slip reduction.
Languageen
PublisherInstitute of Electrical and Electronics Engineers Inc.
Subjectmethod of characteristics
Model predictive control
PDEs
selective catalytic reduction (SCR)
spectral decomposition
TitleModel predictive control of selective catalytic reduction in diesel-powered vehicles
TypeConference Paper
Pagination460-465
dc.accessType Abstract Only


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