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Individual Cylinder Air-Fuel Ratio Estimation Algorithm for Variable Valve Lift (VVL) Engines

机译:可变气门升程(VVL)发动机的单缸空燃比估计算法

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In a multi-cylinder variable valve lift (VVL) engine, in spite of its high efficiency and low emission performance, operation of the variable valve lift brings about not only variation of the air-fuel ratio at the exhaust manifold, but also individual cylinder air-fuel ratio maldistribution. In this study, in order to reduce the air-fuel ratio variation and maldistribution, we propose an individual cylinder air-fuel ratio estimation algorithm for individual cylinder air-fuel ratio control. For the purpose of the individual cylinder air-fuel ratio estimation, air charging dynamics are modeled according to valve lift conditions. In addition, based on the air charging model, individual cylinder air-fuel ratios are estimated by multi-rate sampling from single universal exhaust gas oxygen (UEGO) sensor located on the exhaust manifold. Estimation results are validated with a one-dimensional engine simulation tool. The results of this study indicate that the estimated air-fuel ratios of the individual cylinders closely followed the experimental individual cylinder air-fuel ratios.
机译:在多缸可变气门升程(VVL)发动机中,尽管其效率高且排放量低,但可变气门升程的运行不仅会导致排气歧管处的空燃比发生变化,还会导致单个气缸的变化。空燃比分布不均。在这项研究中,为了减少空燃比的变化和分布不均,我们提出了一种用于单个气缸空燃比控制的单个气缸空燃比估计算法。为了估计单个气缸的空燃比,根据气门升程条件对充气动力学进行建模。此外,基于充气模型,可以通过从位于排气歧管上的单个通用排气氧(UEGO)传感器进行多速率采样来估算单个气缸的空燃比。估计结果通过一维引擎仿真工具进行验证。这项研究的结果表明,估计的单个气缸的空燃比紧随实验的单个气缸的空燃比。

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