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Adaptive Air-Fuel Ratio Controls for Continuously Variable Valve Lift Gasoline Engines

机译:用于连续可变阀升汽油发动机的自适应空燃比控制

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Engines equipped with continuously variable valve lift (CVTL) system can improve the fuel consumption of gasoline engines and provide better torque and power characteristics than conventional engines using variable cam phasing or switcthable valve timing and lift mechanisms. However, the relationship between the intake valve lift and suction air volume to the cylinders changes drastically at low valve lift and low engine speed conditions. This causes air-fuel ratios between cylinders to differ and deteriorates control performance of the air-fuel ratio during transient operations. These in turn reduce the catalyst conversion rate. The purpose of this research is aimed at improving the control performance of the air-fuel ratio with a re-designed secondary O{sub}2 feedback system using a delta-sigma modulation algorithm and a feed-forward compensation algorithm for suction air volume.
机译:装有连续可变阀升降机(CVTL)系统的发动机可以通过可变凸轮相位或SWITCHABLE气门正时和提升机构来提高汽油发动机的燃料消耗,并提供比传统发动机更好的扭矩和功率特性。然而,进气门提升和吸入空气在汽缸中的关系在低阀升程和低发动机速度条件下变化急剧变化。这导致汽缸之间的空气燃料比在瞬态操作期间与空燃比的控制性能差异不同。这些反过来降低了催化剂转化率。该研究的目的旨在利用Δ-Sigma调制算法和用于吸入空气量的前馈补偿算法来改善空燃比的控制性能与重新设计的次级o} 2反馈系统。

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