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WALL-WETTING MODEL BASED METHOD FOR AIR-FUEL RATIO TRANSIENT CONTROL IN GASOLINE ENGINES WITH DUAL INJECTION SYSTEM
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  • WALL-WETTING MODEL BASED METHOD FOR AIR-FUEL RATIO TRANSIENT CONTROL IN GASOLINE ENGINES WITH DUAL INJECTION SYSTEM
  • WALL-WETTING MODEL BASED METHOD FOR AIR-FUEL RATIO TRANSIENT CONTROL IN GASOLINE ENGINES WITH DUAL INJECTION SYSTEM
저자명
Zhang. J.,Shen. T.,Xu. G.,Kako. J.
간행물명
International journal of automotive technology
권/호정보
2013년|14권 6호|pp.867-873 (7 pages)
발행정보
한국자동차공학회
파일정보
정기간행물|ENG|
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기타
이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Modern gasoline engines with dual injection system improve combustion efficiency by using the two injection commands simultaneously. Due to the different dynamics in the two injection paths, the transient air-fuel ratio (A/F) performance when the injection authority is changed remarkably affects the emission performance of the engine system. For this kind of engines, this paper proposes a model-based design approach that gives a dynamic feedforward compensation for achieving good transient A/F performance. Actually, this work centers on discussing the mean-value model parameters for characterizing the wall-wetting phenomenon when the port injection authority is changed under different engine operation conditions. Moreover, from the view of practice, taking into account the event-based physics of the engine system, significant calibration for the model parameters that are employed for achieving the feedforward compensation is investigated experimentally. Finally, experimental validation results demonstrate the improvement of the transient A/F performance by using the control scheme.