Cylinder Pressure based Real-Time IMEP Estimation of Diesel Engines

실린더 압력을 이용한 디젤엔진의 실시간 IMEP 추정

  • Kim, Do-Hwa (Gasoline Engine R&D Team, Hyundai-KIA Motor Company) ;
  • Oh, Byoung-Gul (Department of Automotive Engineering, Graduate School, Hanyang University) ;
  • Ok, Seung-Suk (Department of Automotive Engineering, Graduate School, Hanyang University) ;
  • Lee, Kang-Yoon (Automotive Control & Electronics Laboratory, Hanyang University) ;
  • SunWoo, Myoung-Ho (Department of Automotive Engineering, Hanyang University)
  • Published : 2009.03.01

Abstract

Calculation of indicated mean effective pressure(IMEP) requires high cylinder pressure sampling rate and heavy computational load. Because of that, it is difficult to implement in a conventional electronic control unit. In this paper, a cylinder pressure based real-time IMEP estimation method is proposed for controller implementation. Crank angle at 10-bar difference pressure($CA_{DP10}$) and cylinder pressure difference between $60^{\circ}$ ATDC and $60^{\circ}$ BTDC($DP_{deg}$) are used for IMEP estimation. These pressure variables can represent effectively start of combustion(SOC) and fuel injection quantity respectively. The proposed IMEP estimation method is validated by transient engine operation using a common-rail direct injection diesel engine.

Keywords

References

  1. K. Lee, Closed-loop Control of SOC for Common-rail Direct Injection Diesel Engines, Ph. D. Dissertation, Hanyang University, Seoul, Korea, 2005
  2. M. Hubbard, P.D. Dobson and J.D. Powell, "Closed Loop Control of Spark Advance using a Cylinder Pressure Sensor," ASME Journal of Dynamics Systems, Measurement, and Control, pp.414-420, 1996
  3. M. C. Sellnau, F. A. Matekunas, P. A. Battiston, C. Chang and D. R. Lancaster, "Cylinder-Pressure-Based Engine Control Using Pressure-Ratio-Management and Low-Cost NonIntrusive Cylinder Pressure Sensors," SAE 2000-01-0932,2000
  4. S. Leonhardt, C. Ludwig and R. Schwarz, "REAL-TIME SUPERVISION FOR DIESEL ENGINE INJECTION," Control Engineering Practice, Vol.3, pp.1003-l010, 1995 https://doi.org/10.1016/0967-0661(95)00084-8
  5. A. T. Lee, M. Wiicutts, P. Tunestai and J. Karl Hedrick, "A Method of Lean Air-fuel Ratio Control using Combustion Pressure Measurement," JSAE Review, Vol.22, pp.389-393, 2001 https://doi.org/10.1016/S0389-4304(01)00121-7
  6. T. Jaine, A. Charlet, P. Higelin and Y. Chamaillard, "High Frequency 1MEP Estimation and Filtering for Torque Based SI Engine Control," SAE 2002-01-1276, 2002
  7. H. Husted, D. Kruger, G. Fattic, G. Ripley and E. Kelly, "Cylinder Pressure-Based Control of Pre-Mixed Diesel Combustion," SAE 2007-01-0773,2007
  8. K. Lee, M. Yoon, M. Son and M. Sunwoo, "Closed-loop Control of Start of Combustion using Difference Pressure Management," IMechE Automobile Engineering, Vol.220, pp.l6l5-l628,2006 https://doi.org/10.1243/09544070JAUTO189
  9. M. F. J. Brunt and A. L. Emtage, "Evaluation of IMEP Routines and Analysis Errors," SAE 960609,1996
  10. M. Kao and J.J. Moskwa, "Model-Based Engine Fault Detection Using Cylinder Pressure Estimates from Nonlinear Observers," IEEE Decision and Control, Vol.3, pp.2742-2747,1994 https://doi.org/10.1109/CDC.1994.411386
  11. M. Yoon, "Real-time Simulation and Control of Common-rail Direct Injection Diesel Engines," Ph. D. Dissertation, Seoul, Korea, 2006
  12. M. Yoon, K. Lee, M. Sunwoo and B. Oh, "Cylinder Pressure Based Combustion Phasing Control of a CRDI Diesel Engine," SAE 2007 -01-0772, 2007
  13. D. Kim, B. Oh, K. Lee and M. Sunwoo, "Cylinder-Pressure based IMEP Estimation for CRDI Diesel Engines," Fall Conference Proceedings, Vol. IV, KSAE, pp.l770-1776, 2007
  14. S. Park and D.G. Thomas, "Cyclic Variability of IMEP and Its Correlations in Distribution with Other Combustion-Related Parameters in Natural Gas Engine," Transactions of KSAE, Vol.4, No.5, pp.82-89, 1996
  15. S. Kim, S. Kim, M. Kim and J. Park, "The Indicated Performance Analysis of Spark Ignition Engine by Available Energy," Proceedings of Busan Engine International Symposium, pp.l0l-l04, 2001