승용 디젤엔진에서 EGR과 VGT의 공동 제어

Coordinated Control of EGR and VGT in the Diesel Engine

  • 허준영 (한국기술교육대학교 메카트로닉스공학부) ;
  • 정진은 (한국기술교육대학교 기계정보공학부) ;
  • 진영욱 (한국기술교육대학교 기계정보공학부) ;
  • 강우 (자동차부품연구원 첨단동력/IT종합연구센터) ;
  • 정재우 (자동차부품연구원 첨단동력/IT종합연구센터)
  • Huh, Jun-Young (School of Mechatronical Engineering, Korea University of Technology and Education) ;
  • Chung, Jin-Eun (School of Mechanical Engineering, Korea University of Technology and Education) ;
  • Jin, Young-Wook (School of Mechanical Engineering, Korea University of Technology and Education) ;
  • Kang, Woo (Advanced Power & IT Research Center, KATECH) ;
  • Chung, Jae-Woo (Advanced Power & IT Research Center, KATECH)
  • 발행 : 2008.07.01

초록

In diesel engine technology the drive to reduce emissions and fuel consumption with improved performance targets has led to many advances. In particular, Exhaust Gas Recirculation (EGR) and Variable Geometry Turbocharger (VGT) have played a key role in achieving these aims by permitting flexible control of the engine inlet gas charge. The full potential of these devices are difficult to achieve due to limitations in the classical control methods. However, fuzzy logic is particularly appealing due to its simple heuristic nature. The controller used in this work was designed using the Matlab Fuzzy Logic Toolbox. The overall object is to access the potential for emissions and fuel consumption reductions during transient events whilst maintaining and even improving driveability. Classical control methods (PID), as used on production engines, are examined and contrasted with an coordinated control that utilizes fuzzy logic.

키워드

참고문헌

  1. S. Jeong, J. Chung, J. Kang and W. Kang, "The Effect of Control of the VGT and EGR in a Turbocharged Common-Rail Diesel Engine on Emissions under Partial Loads Conditions," Transactions of KSAE, Vol.15, No.6, pp.151-158, 2007
  2. M. Van Nieuwstadt, I. Kolmanovsky, P. Moraal, M. Jankovic and A. Stefanopoulou, "EGR VGT Control Schemes: Experimental Comparison for a High Speed Diesel Engine," IEEE Control Systems Magazine June 2000, pp.64-79, 2000
  3. T. Shirawaka, M. Miura, H. Itoyama, E. Aiyoshizawa and S. Kimura, "Study of Model-based Cooperative Control of EGR and VGT for a Low-temperature, Premixed Combustion Diesel Engine," SAE 2001-01-2006, 2001
  4. M. Van Nieuwstadt, P. Moraal, I. Kolmannovsky and A. Stefanopoulou, "A Comparison of SISO and MIMO Designs for EGR-VGT Control of a High Speed Diesel Engine," IFAC Workshop Advances in Automotive Control, Ohio USA, 1998
  5. D. Walker, "The Design and Implementation of an Integrated Variable Geometry Turbocharger Control Strategy for a Passenger Car Diesel Application," MSc Thesis, University of Loughborough, 1998
  6. R. S. Wijetunge, J. G. Hawley and N. D. Vaughan, "Application of Alternative EGR and VGT Strategies to a Diesel Engine," SAE 2004-01-0899, 2004
  7. IFP-Engine Library, Version 4.3, Imagine, 2005