In this paper an air path model of a diesel engine is presented for control system design. The model was developed for common-rail, direct injected, turbocharged and intercooled commercial vehicle diesel engines which are equipped with compressed air booster system (PBS ® – Pneumatic Booster System)[12], high pressure exhaust gas recirculation loop (EGR) with EGR-cooler and exhaust brake (EB). In current and next generation emission standards and legislation introduced significant limitations for NO x and soot. It is really challenging to handle these components, especially at transient engine operations. Additionally the fuel economy and driveability requirements also have to be fulfilled. It is widely known that the nitric oxide formation can be limited with an appropriate amount of exhaust gas recirculation. It can be achieved even in transient modes with precisely controlled EGR-valve operation and with a suitable backpressure generation by the exhaust brake. The soot formation is influenced mainly by the air-fuel ratio of the mixture which can be affected by the intake manifold pressure in case of a desired engine load and EGR rate. With the compressed air booster system the intake manifold pressure can be controlled in transients arbitrarily. Therefore with a suitable air path controller the modeled engine setup is able to handle both the NO x and soot formation in transient cases. To solve the presented control problem a model based controller design is targeted. The reported model is the first step of this work.
[1]
Lino Guzzella,et al.
Control of diesel engines
,
1998
.
[2]
Lino Guzzella,et al.
Introduction to Modeling and Control of Internal Combustion Engine Systems
,
2004
.
[3]
C. Rakopoulos,et al.
Diesel Engine Transient Operation
,
2013
.
[4]
Ilya Kolmanovsky,et al.
Turbocharger Modeling for Automotive Control Applications
,
1999
.
[5]
Katalin M. Hangos,et al.
Unified model simplification procedure applied to a single protection valve
,
2005
.
[6]
László Palkovics,et al.
Driveline torque observer for heavy duty vehicle
,
2011
.
[7]
Stefan Pischinger,et al.
Emissionsregelung bei Nutzfahrzeugmotoren über den Luft- und Abgaspfad
,
2005
.
[8]
Eduard Gerum,et al.
Improving the torque behaviour of turbocharged diesel engines by injecting compressed air
,
2009
.
[9]
A. H. Glattfelder,et al.
Model-based control of the VGT and EGR in a turbocharged common-rail diesel engine: Theory and passenger car implementation
,
2003
.
[10]
Ádám Török,et al.
International literature review on the possibilities of biodiesel production
,
2011
.
[11]
Hua Zhao,et al.
The Dilution, Chemical, and Thermal Effects of Exhaust Gas Recirculation on Disesel Engine Emissions - Part 4: Effects of Carbon Dioxide and Water Vapour
,
1997
.