Research on Control-Oriented Modeling for Turbocharged SI and DI Gasoline Engines
In order to analyze system performance and develop model-based control algorithms for turbocharged spark ignition and direct injection (SIDI) gasoline engines, a control oriented mean value model is developed and validated. The model is constructed based on theoretical analysis for the different com...
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Online Access: | http://dx.doi.org/10.1155/2015/765083 |
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doaj-8ebea424dc0c4d9cb7afae796c82873f2020-11-24T23:00:30ZengHindawi LimitedJournal of Chemistry2090-90632090-90712015-01-01201510.1155/2015/765083765083Research on Control-Oriented Modeling for Turbocharged SI and DI Gasoline EnginesFeitie Zhang0Shoudao Huang1Xuelong Li2Fengjin Guan3College of Mechanical and Vehicle Engineering, Hunan University, Changsha 410082, ChinaCollege of Electrical and Information Engineering, Hunan University, Changsha 410082, ChinaLifan Passenger Vehicle Company Limited, Chongqing 401122, ChinaLifan Passenger Vehicle Company Limited, Chongqing 401122, ChinaIn order to analyze system performance and develop model-based control algorithms for turbocharged spark ignition and direct injection (SIDI) gasoline engines, a control oriented mean value model is developed and validated. The model is constructed based on theoretical analysis for the different components, including the compressor, turbine, air filter, intercooler, throttle, manifold, and combustion chamber. Compressor mass flow and efficiency are modeled as parameterized functions. A standard nozzle model is used to approximate the mass flow through the turbine, and the turbine efficiency is modeled as a function of blade speed ratio (BSR). The air filter is modeled as a tube for capturing its pressure drop feature. The effectiveness number of transfer units (NTU) modeling method is utilized for the intercooler. The throttle model consists of the standard nozzle model with an effective area regressed to throttle position. Manifolds are modeled for their dynamically varying pressure state. For the cylinder, the air mass flow into cylinders, fuel mass, torque, and exhaust temperature are modeled. Compared to the conventional lookup table approach, transient dynamics error can be improved significantly through using the model from this work.http://dx.doi.org/10.1155/2015/765083 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Feitie Zhang Shoudao Huang Xuelong Li Fengjin Guan |
spellingShingle |
Feitie Zhang Shoudao Huang Xuelong Li Fengjin Guan Research on Control-Oriented Modeling for Turbocharged SI and DI Gasoline Engines Journal of Chemistry |
author_facet |
Feitie Zhang Shoudao Huang Xuelong Li Fengjin Guan |
author_sort |
Feitie Zhang |
title |
Research on Control-Oriented Modeling for Turbocharged SI and DI Gasoline Engines |
title_short |
Research on Control-Oriented Modeling for Turbocharged SI and DI Gasoline Engines |
title_full |
Research on Control-Oriented Modeling for Turbocharged SI and DI Gasoline Engines |
title_fullStr |
Research on Control-Oriented Modeling for Turbocharged SI and DI Gasoline Engines |
title_full_unstemmed |
Research on Control-Oriented Modeling for Turbocharged SI and DI Gasoline Engines |
title_sort |
research on control-oriented modeling for turbocharged si and di gasoline engines |
publisher |
Hindawi Limited |
series |
Journal of Chemistry |
issn |
2090-9063 2090-9071 |
publishDate |
2015-01-01 |
description |
In order to analyze system performance and develop model-based control algorithms for turbocharged spark ignition and direct injection (SIDI) gasoline engines, a control oriented mean value model is developed and validated. The model is constructed based on theoretical analysis for the different components, including the compressor, turbine, air filter, intercooler, throttle, manifold, and combustion chamber. Compressor mass flow and efficiency are modeled as parameterized functions. A standard nozzle model is used to approximate the mass flow through the turbine, and the turbine efficiency is modeled as a function of blade speed ratio (BSR). The air filter is modeled as a tube for capturing its pressure drop feature. The effectiveness number of transfer units (NTU) modeling method is utilized for the intercooler. The throttle model consists of the standard nozzle model with an effective area regressed to throttle position. Manifolds are modeled for their dynamically varying pressure state. For the cylinder, the air mass flow into cylinders, fuel mass, torque, and exhaust temperature are modeled. Compared to the conventional lookup table approach, transient dynamics error can be improved significantly through using the model from this work. |
url |
http://dx.doi.org/10.1155/2015/765083 |
work_keys_str_mv |
AT feitiezhang researchoncontrolorientedmodelingforturbochargedsianddigasolineengines AT shoudaohuang researchoncontrolorientedmodelingforturbochargedsianddigasolineengines AT xuelongli researchoncontrolorientedmodelingforturbochargedsianddigasolineengines AT fengjinguan researchoncontrolorientedmodelingforturbochargedsianddigasolineengines |
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