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首页> 外文期刊>International Journal of Automotive Technology >Modeling Analysis on Improving Cylinder Balance in A Gasoline Engine Using Electromagnetic Valve Train
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Modeling Analysis on Improving Cylinder Balance in A Gasoline Engine Using Electromagnetic Valve Train

机译:使用电磁阀列车改善汽油发动机气缸平衡的建模分析

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摘要

For the multi-cylinder gasoline engine, the consistency among cylinders is an important index to affect the engine emission and the engine power. In this paper, an individual cylinder air-fuel ratio (A/F) control method for a fourcylinder camless engine with the electromagnetic valve train (EMVT) was proposed to reduce the imbalance of engine torque. An individual cylinder A/F estimation algorithm with a single universal exhaust gas oxygen (UEGO) sensor based on fading Kalman filtering was introduced. Four proportional-integral feedback controllers were built to regulate the individual A/F by adjusting the intake valve closing (IVC) timing of each cylinder independently based on the EMVT. The effectiveness of the proposed estimation and control approach was validated by co-simulation of GT-Power and Simulink. The results showed that the proposed estimation method could accurately estimate the individual cylinder A/F, and the maximum estimation error under steady state condition was less than 1 %. With the feedback control, both the individual A/F imbalance and the cylinderto- cylinder torque generation imbalance were decreased.
机译:对于多缸汽油发动机,气缸之间的一致性是影响发动机排放和发动机功率的重要指标。在本文中,提出了一种具有电磁阀门列车(EMVT)的四个圆锥形发动机(EMVT)的单个汽缸空燃比(A / F)控制方法,以降低发动机扭矩的不平衡。介绍了基于衰落的卡尔曼滤波的单个通用废气氧(UEGO)传感器的单个气缸A / F估计算法。建立四个比例积分反馈控制器以通过根据EMVT独立地调节每个气缸的进气阀关闭(IVC)定时来调节各个A / F。通过GT-Power和Simulink的共模仿真验证了所提出的估计和控制方法的有效性。结果表明,所提出的估计方法可以准确地估计各个汽缸A / F,稳态条件下的最大估计误差小于1%。通过反馈控制,各个A / F不平衡和圆柱缸扭矩产生不平衡都减少。

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