Browse Publications Technical Papers 2005-01-0017
2005-04-11

Nonlinear Dynamic Model of a Turbocharged Diesel Engine 2005-01-0017

Emission regulations for diesel engines have steadily become more stringent in the past decade, and there is no indication that this trend will change. As a result, the use of electronic engine control systems will be indispensable to diesel-powered vehicles. The conventional map-based control scheme is inadequate to meet the emission requirements. A mathematical model-based control scheme for a turbocharged diesel engine, on the other hand, can improve performance in terms of power and emissions during the steady state and the transient engine operations. In this study, a dynamic model of a turbocharged common-rail direct injection diesel engine is developed for control applications. This model is composed of differential and algebraic equations, which are derived from the filling and emptying method and the quasi-steady method, respectively. The dynamic subsystems include the air intake subsystem, the exhaust subsystem, and the rotational subsystems of the turbocharger and crankshaft. The compressor and the turbine models of a turbocharger are obtained based on the empirical data from the manufacturer. The developed engine model is evaluated through engine tests.

SAE MOBILUS

Subscribers can view annotate, and download all of SAE's content. Learn More »

Access SAE MOBILUS »

Members save up to 16% off list price.
Login to see discount.
Special Offer: Download multiple Technical Papers each year? TechSelect is a cost-effective subscription option to select and download 12-100 full-text Technical Papers per year. Find more information here.
We also recommend:
TECHNICAL PAPER

Model Based Control of Engines

2007-26-025

View Details

TECHNICAL PAPER

Model Reduction for Automotive Engine to Enhance Thermal Management of European Modern Cars

2005-01-0700

View Details

TECHNICAL PAPER

Hardware in the Loop for a Dynamic Driving System Controller Testing and Validation

2005-01-1667

View Details

X