Spark-ignited engines equipped by a three-way catalyst require a precise control of the air fuel ratio fed to the combustion chamber. A stoichiometric mixture is necessary for the proper working of the catalyst in order to meet the legislation requirement. A critical part of the air fuel ratio control is the feed-forward compensation of the fuel dynamics. Conventional strategies are based on a simplified model of the wall-wetting phenomena whose parameters are stored in off-line computed look-up tables. Unfortunately, errors in the parameters calibration over the whole engine map deteriorate the control performances in terms of emissions. In this paper an automatic procedure for a rapid and efficient identification of the wall-wetting parameters is presented. The whole procedure has been experimentally tested on a vehicle by using a test bench. Using the identified parameters values, a significant reduction in the air fuel ratio excursion has been achieved during rapid throttle transients with respect to the same vehicle equipped by a commercial ECU with resident engine maps computed by traditional calibration activity. Moreover, the algorithm can be also on-line used to improve air-fuel ratio control performances.

An algorithm for the calibration of wall-wetting model parameters

Alessandro di Gaeta
Primo
;
2003

Abstract

Spark-ignited engines equipped by a three-way catalyst require a precise control of the air fuel ratio fed to the combustion chamber. A stoichiometric mixture is necessary for the proper working of the catalyst in order to meet the legislation requirement. A critical part of the air fuel ratio control is the feed-forward compensation of the fuel dynamics. Conventional strategies are based on a simplified model of the wall-wetting phenomena whose parameters are stored in off-line computed look-up tables. Unfortunately, errors in the parameters calibration over the whole engine map deteriorate the control performances in terms of emissions. In this paper an automatic procedure for a rapid and efficient identification of the wall-wetting parameters is presented. The whole procedure has been experimentally tested on a vehicle by using a test bench. Using the identified parameters values, a significant reduction in the air fuel ratio excursion has been achieved during rapid throttle transients with respect to the same vehicle equipped by a commercial ECU with resident engine maps computed by traditional calibration activity. Moreover, the algorithm can be also on-line used to improve air-fuel ratio control performances.
2003
Istituto Motori - IM - Sede Napoli
Inglese
7
Esperti anonimi
Internal Combustion Engine, Air Fuel Ratio Control, Parameter Identification, Modelling, Automatic Control
Nota 1: articolo presentato al SAE 2003 World Congress & Exhibition. Nota 2: articolo selezionato per ristampa in “Electronic Engine Control Technologies, 2nd Edition”, Edited by Ronald K. Jurgen, Progress in Technology Books Series*, PT-110, SAE International, 2004, ISBN 0-7680-1339-9. Nota 2: articolo selezionato per ristampa in “Electronic Engine Controls 2003”, Special Publications, SP-1749, SAE International, 2003, ISBN 978-0-7680-1172-2. *Un PT (Progress in Technology) book è una raccolta di punta di articoli tecnici della SAE (Society of Automotive Engineering) che caratterizzano i progressi attuali ed emergenti di una particolare tecnologia; la selezione degli articoli è curata da esperti nei loro rispettivi campi e ogni PT book fornisce le informazioni più complete tra tutta la pubblicistica SAE in un determinato settore dell’automotive; in particolare, l’edizione PT-100 rappresenta la 2a edizione della serie “Electronic Control Engine Technologies” che include i 100 articoli più significativi tra tutti quelli pubblicati dal 1999 al 2003 nell’ambito del controllo elettronico di MCI.
Internazionale
No
6
info:eu-repo/semantics/article
262
DI GAETA, Alessandro; Santini, Stefania; Glielmo, Luigi; De Cristofaro, Ferdinando; Di Giuseppe, Carlo; Caraceni, Antonello
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/13180
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