- Albrecht A., Grondin O., Berr F.L., Solliec G.L. (2007) Towards a Stronger Simulation Support for Engine Control Design: a Methodological Point of View, Oil Gas Sci. Technol. 62, 437-456. [CrossRef] [EDP Sciences] [Google Scholar]
- Baehr H.D., Stephan K. (2006) Wärme- und Stoffübertragung, Springer, Berlin. [Google Scholar]
- Barths H., Felsch C., Peters, N. (2009) Mixing models for the two-way-coupling of CFD codes and zero-dimensional multi-zone codes to model HCCI combustion, Combust. Flame 156, 130-139. [CrossRef] [Google Scholar]
- Barths H., Hasse C., Peters N. (2000) Computational fluid dynamics modelling of non-premixed combustion in direct injection diesel engines, Int. J. Eng. Res. 1, 249-267. [CrossRef] [Google Scholar]
- Bengtsson J., Strandh P., Johansson R., Tuneståal P., Johansson B. (2006) Hybrid control of homogeneous charge compression ignition (HCCI) engine dynamics, Int. J. Control 79, 422-448. [CrossRef] [Google Scholar]
- Bengtsson J., Strandh P., Johansson R., Tuneståal P., Johansson B. (2007) Hybrid modelling of homogeneous charge compression ignition (HCCI) engine dynamics — a survey, Int. J. Control 80, 1814-1847. [CrossRef] [Google Scholar]
- Colin O., Benkenida A. (2004) The 3-Zones Extended Coherent Flame Model (ECFM3Z) for Computing Premixed/Diffusion Combustion, Oil Gas Sci. Technol. 59, 593-609. [Google Scholar]
- Dec J.E. (2009) Advanced compression-ignition engines - Understanding the in-cylinder processes, Proc. Combust. Inst. 32, 2727-2742. [CrossRef] [Google Scholar]
- Drews P., Hoffmann K., Beck R., Gasper R., Vanegas A., Felsch C., Peters N., Abel D. (2009) Fast Model Predictive Control for the Air Path of a Turbocharged Diesel Engine, European Control Conference 2009, Budapest, Hungary. [Google Scholar]
- Eng J.A. (2002) Characterization of Pressure Waves in HCCI Combustion, SAE paper 2002-01-2859. [Google Scholar]
- ETAS GmbH (2008) ES 1000.3 Benutzerhandbuch, Technical report, ETAS GmbH. [Google Scholar]
- Felsch C., Dahms R., Glodde B., Vogel S., Jerzembeck S., Peters N., Barths H., Sloane T., Wermuth N., Lippert A.M. (2009) An Interactively Coupled CFD-Multi-Zone Approach to Model HCCI Combustion, Flow Turbul. Combust. 82, 621-641. [CrossRef] [Google Scholar]
- Felsch C., Hoffmann K., Vanegas A., Drews P., Barths H., Abel D., Peters N. (2009). Combustion model reduction for diesel engine control design, Int. J. Eng. Res. 10, 359-387. [CrossRef] [Google Scholar]
- Felsch C., Vanegas A., Kerschgens B., Peters N., Hoffmann K., Drews P., Abel D., Barths H. (2008) Systematic Reduction of an Interactively Coupled CFD-Multi-Zone Approach towards a Stand-alone Multi-Zone Model for PCCI Combustion, Thiesel 2008: Thermo-and fluid dynamic processes in Diesel Engines, Universidad Politécnica de Valencia, Valencia, Spain. [Google Scholar]
- Gamma Technologies (2008) GT-POWER User’s Manual and Tutorial, GT-SUITE Version 7.0, Technical report, Gamma Technologies. [Google Scholar]
- Guzzella L., Onder C.H. (2004) Introduction to Modeling and Control of Internal Combustion Engine Systems, Springer, Berlin. [Google Scholar]
- Harada A., Shimazaki N., Sasaki S., Miyamoto T., Akagawa H., Tsujimura K. (1998) The Effects of Mixture Formation on Premixed Lean Diesel Combustion, SAE paper 980533. [Google Scholar]
- Hergart C.A., Barths H., Siewert R.M. (2005) Modeling Approaches for Partially Premixed Compression Ignition Combustion, SAE paper 2005-01-0218. [Google Scholar]
- Heywood J.B. (1988) Internal Engine Combustion Fundamentals, McGraw-Hill, New York. [Google Scholar]
- Hillion M., Buhlbuck H., Chauvin J., Petit N. (2009) Combustion Control of Diesel Engines Using Injection Timing, SAE paper 2009-01-0367. [Google Scholar]
- Hillion M., Chauvin J., Grondin O., Petit N. (2008) Active Combustion Control of Diesel HCCI Engine: Combustion Timing, SAE paper 2008-01-0984. [Google Scholar]
- Hoffmann K., Drews P., Abel D., Felsch C., Vanegas A., Peters N. (2009) A Cycle-Based Multi-Zone Simulation Approach Including Cycle-to-Cycle Dynamics for the Development of a Controller for PCCI Combustion, SAE paper 2009-01-0671. [Google Scholar]
- IAV GmbH (2008) FI2RE - Flexible Injection and Ignition for Rapid Engineering, http://www.iav.com/de/1 engineering/powertrainmechatronik/messtechnik/fi2re.php. [Google Scholar]
- Iwabuchi Y., Kawai K., Shoji T., Takeda Y. (1999) Trial of New Concept Diesel Combustion System - Premixed Compression Ignited Combustion, SAE paper 1999-01-0185. [Google Scholar]
- Lunze J. (2008) Regelungstechnik 2: Mehrgrößensysteme, Digitale Regelung, Springer, Berlin. [Google Scholar]
- Nakayama S., Ibuki T., Hosaki H., Tominaga H. (2008) An Application of a Model Based Combustion Control to Transient Cycle-by-Cycle Diesel Combustion, SAE paper 2008-01-1311. [Google Scholar]
- Narayanaswamy K., Hessel R.P., Rutland C.J. (2005) A New Approach to Model DI-Diesel HCCI Combustion for Use in Cycle Simulation Studies, SAE paper 2005-01-3743. [Google Scholar]
- Narayanaswamy K., Rutland C.J. (2006) A Modeling Investigation of Combustion Control Variables During DI-Diesel HCCI Engine Transients, SAE paper 2006-01-1084. [Google Scholar]
- Nelles O. (2000) Nonlinear System Identification: From Classical Approaches to Neural Networks and Fuzzy Models, Springer, Berlin. [Google Scholar]
- Peréz E., Blasco X., García-Nieto S., Sanchis J. (2006) Diesel Engine Identification and Predictive Control using Wiener and Hammerstein Models, Proceedings of the 2006 IEEE International Conference on Control Applications, Munich, Germany. [Google Scholar]
- Peters N., Paczko G., Seiser R., Seshadri K. (2002) Temperature cross-over and non-thermal runaway at two-stage ignition of n-heptane, Combust. Flame 28, 38-59. [CrossRef] [Google Scholar]
- Pope S.B. (1985) PDF methods for turbulent reactive flows, Prog. Energ. Combust. 11, 119-192. [Google Scholar]
- Reitz R., Rutland C.J. (1995) Development and testing of diesel engine CFD models, Prog. Energ. Combust. 21, 173-196. [CrossRef] [Google Scholar]
- Ricardo Software (2003) WAVE Basic Manual, Documentation/ User’s Manual, Version 5.0, Technical report, Ricardo Software. [Google Scholar]
- Richert F. (2005) Objektorientierte Modellbildung und Nichtlineare Prädiktive Regelung von Dieselmotoren, PhD Thesis, RWTH Aachen University, Germany. [Google Scholar]
- RWTH Aachen University and Bielefeld University (since 2006) SFB 686 - Modellbasierte Regelung der homogenisierten Niedertemperatur-Verbrennung, http://www.sfb686.rwth-aachen.de. [Google Scholar]
- Schulze T., Wiedemeier M., Schuette H. (2007) Crank Angle - Based Diesel Engine Modeling for Hardware-in-the-Loop Applications with In-Cylinder Pressure Sensors, SAE paper 2007-01-1303. [Google Scholar]
- Shaver G.M., Gerdes J.C., Roelle M.J., Caton P.A., Edwards C.F. (2005) Dynamic Modeling of Residual-Affected Homogeneous Charge Compression Ignition Engines with Variable Valve Actuation, J. Dyn. Syst. Meas. Control 127, 374-381. [CrossRef] [Google Scholar]
- Shaver G.M., Roelle M.J., Caton P.A., Kaahaaina N.B., Ravi N., Hathout J.P., Ahmed J., Kojić A., Park S., Edwards C.F., Gerdes J.C. (2005) A physics-based approach to the control of homogeneous charge compression ignition engines with variable valve actuation, Int. J. Eng. Res. 6, 361-375. [CrossRef] [Google Scholar]
- Shaver G.M., Roelle M.J., Gerdes J.C. (2006) Modeling cycle-to-cycle dynamics and mode transition in HCCI engines with variable valve actuation, Control Eng. Pract. 14, 213-222. [CrossRef] [Google Scholar]
- Takeda Y., Keiichi N. (1996) Emission Characteristics of Premixed Lean Diesel Combustion with Extremely Early Staged Fuel Injection, SAE paper 961163. [Google Scholar]
- Turin R., Zhang R., Chang M.F. (2008) Systematic Model-Based Engine Control Design, SAE paper 2008-01-0994. [Google Scholar]
- Vanegas A.,Won H., Felsch C., Gauding M., Peters N. (2008) Experimental Investigation of the Effect of Multiple Injections on Pollutant Formation in a Common-Rail DI Diesel Engine. SAE paper 2008-01-1191. [Google Scholar]
- Woschni G. (1967) A Universally Applicable Equation for Instantaneous Heat Transfer Coefficients in the Internal Combustion Engine, SAE paper 670931. [Google Scholar]
Numéro |
Oil Gas Sci. Technol. – Rev. IFP Energies nouvelles
Volume 66, Numéro 4, July-August 2011
IFP Energies nouvelles International Conference: E-COSM'09 - IFAC Workshop on Engine and Powertrain Control, Simulation and Modeling
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Page(s) | 549 - 562 | |
DOI | https://doi.org/10.2516/ogst/2011102 | |
Publié en ligne | 9 mai 2011 |
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