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Model Predictive Control-based Engine Idle Speed Regulation with Various Coordinated Controls Using an Instantaneous Engine Model

Journal Article
03-14-04-0031
ISSN: 1946-3936, e-ISSN: 1946-3944
Published March 29, 2021 by SAE International in United States
Model Predictive Control-based Engine Idle Speed Regulation with Various Coordinated Controls Using an Instantaneous Engine Model
Sector:
Citation: Janbandhu, S., Sengupta, S., Mukhopadhyay, S., and Sarkar, P., "Model Predictive Control-based Engine Idle Speed Regulation with Various Coordinated Controls Using an Instantaneous Engine Model," SAE Int. J. Engines 14(4):517-530, 2021, https://doi.org/10.4271/03-14-04-0031.
Language: English

References

  1. Yang , K.J. , Choi , J.W. , and Hong , K.-S. Advanced Sliding Mode Idle Speed Control for a Nonlinear Engine Mode: Coordinated Throttle/Spark Advance Control Proceedings of the 36th SICE Annual Conference Tokushima, Japan 1997 1301 1304
  2. Cairano , S.D. , Yanakiev , D. , and Bemporad , A. Model Predictive Idle Speed Control: Design Analysis and Experimental Evaluation IEEE Transactions on Control Systems Technology 20 1 84 97 2012 https://doi.org/10.1109/TCST.2011.2112361
  3. Khatami , N. and Ilegbusi , O.J. A Mean-Value Model of Internal Combustion Engine Based on Variable Valve Phase Timing ASME International Mechanical Engineering Congress and Exposition, Volume 11: Transportation Systems Houston, TX 2012
  4. Kajitani , M. , and Nonami , K. High Performance Idle Speed Control Applying the Sliding Mode Control with H Robust Hyperplane SAE Technical Paper 2001-01-0263 2001 https://doi.org/10.4271/2001-01-0263
  5. Alt , B. , Blath , J.P. , Svaricek , F. , and Schultalbers , M. Control of Idle Engine Speed and Torque Reserve with Higher Order Sliding Modes IEEE Control Applications, (CCA) & Intelligent Control (ISIC) St. Petersburg 2009 363 369
  6. Kang , E. , Hong , S. , and Sunwoo , M. Idle Speed Controller Based on Active Disturbance Rejection Control in Diesel Engines Int. J Automot. Technol. 17 937 945 2016 https://doi.org/10.1007/s12239-016-0091-0
  7. Williams , S.J. , Hrovat , D. , Davey , C. , Maclay , D. et al. Idle Speed Control Design Using an H-Infinity Approach 1989 American Control Conference Pittsburgh, PA 1989 1950 1956 https://doi.org/10.23919/ACC.1989.4790510
  8. Yildiz , Y. , Annaswamy , A. , Yanakiev , D. , and Kolmanovsky , I. Adaptive Idle Speed Control for Internal Combustion Engines 2007 American Control Conference New York 2007 3700 3705 https://doi.org/10.1109/ACC.2007.4282915
  9. Nadeer , E.P. , Patra , A. , and Mukhopadhyay , S. Hybrid State Space Modeling of a Spark Ignition Engine for Online Fault Diagnosis ASME. J. Dyn. Sys., Meas., and Control. 2018 140 4 041010 https://doi.org/10.1115/1.4038164 2017
  10. Siemens PLM Software https://www.plm.automation.siemens.com/global/en/products/simcenter/simcenter-amesim.html 2018
  11. Liang , J.Y. , Xie , X. , Hu , Y. , and Chen , H. Data-Driven Predictive Control of Idle Speed Control for SI Engine The 27th Chinese Control and Decision Conference (2015 CCDC) Qingdao 2015 4535 4540
  12. Postma , M. , and Nagamune , R. Air-Fuel Ratio Control of Spark Ignition Engines Using a Switching LPV Controller IEEE Transactions on Control Systems Technology 20 5 1175 1187 2012
  13. Livshits , M. , Sanvido , D.J. , and Folkerts , C.H. 1995
  14. Fan , C.-H. , and Shu , J.-C. Engine Idle Speed and Coolant Temperature Simulation and Diagnosis System Design Chung Hua Journal of Science and Engineering 6 2 63 69 2008
  15. MATLAB https://in.mathworks.com/products/sysid.html 2017
  16. Yildiz , Y. , Annaswamy , A.M. , Yanakiev , D. , and Kolmanovsky , I. Spark-Ignition-Engine Idle Speed Control: An Adaptive Control Approach IEEE Transactions on Control Systems Technology 19 5 990 1002 2011
  17. MATLAB https://in.mathworks.com/help/signal/ref/tf2ss.html 2017
  18. Wang , L. Model Predictive Control System Design and Implementation Using MATLAB London Springer 2009
  19. MATLAB https://in.mathworks.com/help/optim/ug/fmin.con.html 2018
  20. Mikosch , T. , Resnick , S. , and Robinson , S. Numerical Optimization Second Berlin Springer 2006
  21. Sarkar , P. , and Hazarika , D. Development of Engine Management System - Tata Nano - The Value Car SAE Technical Paper 2010-01-2324 2010 https://doi.org/10.4271/2010-01-2324
  22. OPAL-RT Technologies https://www.opal-rt.com/simulator-platform-op5600/ 2018

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