In the recent years, engine developer attention is focused on the application of advanced control strategies for the SCR system, considered as the leading technology for the abatement of NOX emissions in Diesel engines. The most challenging task in SCR control is the optimization of the urea dosing strategy while reaching the balance between high NOX reduction efficiency and low NH3 slip in the tailpipe, especially during transients. In order to accomplish this task, an Extended Kalman Filter (EKF) estimator is developed, to be integrated in the closed loop control of SCR urea dosing. The EKF estimator is applied to a one-state model, in which the ammonia coverage ratio θ is the only dynamic process taken into account. To improve the model ...
Selective Catalytic Reduction (SCR) is the dominant solution for meeting future NOx reduction regula...
A three way catalytic converter (TWC) is responsible for conversion of engine out hazardous pollutan...
Abstract: To meet the NOx limit without a penalty of fuel consumption, urea-SCR system is currently...
In the recent years, engine developer attention is focused on the application of advanced control st...
This paper focuses on the development of an Extended Kalman Filter for estimating internal species c...
Estimating un-measurable states is an important component for onboard diagnostics (OBD) and control ...
The most recent regulation for diesel engines with regards to NOx emissions and SCR systems consider...
As NOx emissions legislation for Diesel-engines is becoming more stringent than ever before, an afte...
Diesel Oxidation Catalysts (DOC) are used on heavy duty diesel engine applications and experience la...
A multi-zone particulate filter (MPF) model along with the extended Kalman filter (EKF) based cataly...
The continuous challenge to decrease emissions, sensor costs and fuel consumption in diesel engines ...
Selective catalytic reduction (SCR) is a promising diesel aftertreatment technology that enables low...
The selective catalytic reduction (SCR) system is a highly-effective aftertreatment device for NOx r...
A model-based urea-dosing controller has been developed for the selective catalytic reduction (SCR) ...
Selective Catalytic Reduction (SCR) is the dominant solution for meeting future NOx reduction regula...
A three way catalytic converter (TWC) is responsible for conversion of engine out hazardous pollutan...
Abstract: To meet the NOx limit without a penalty of fuel consumption, urea-SCR system is currently...
In the recent years, engine developer attention is focused on the application of advanced control st...
This paper focuses on the development of an Extended Kalman Filter for estimating internal species c...
Estimating un-measurable states is an important component for onboard diagnostics (OBD) and control ...
The most recent regulation for diesel engines with regards to NOx emissions and SCR systems consider...
As NOx emissions legislation for Diesel-engines is becoming more stringent than ever before, an afte...
Diesel Oxidation Catalysts (DOC) are used on heavy duty diesel engine applications and experience la...
A multi-zone particulate filter (MPF) model along with the extended Kalman filter (EKF) based cataly...
The continuous challenge to decrease emissions, sensor costs and fuel consumption in diesel engines ...
Selective catalytic reduction (SCR) is a promising diesel aftertreatment technology that enables low...
The selective catalytic reduction (SCR) system is a highly-effective aftertreatment device for NOx r...
A model-based urea-dosing controller has been developed for the selective catalytic reduction (SCR) ...
Selective Catalytic Reduction (SCR) is the dominant solution for meeting future NOx reduction regula...
A three way catalytic converter (TWC) is responsible for conversion of engine out hazardous pollutan...
Abstract: To meet the NOx limit without a penalty of fuel consumption, urea-SCR system is currently...