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Individual Cylinder Air-Fuel Ratio Estimation for a Gasoline Engine with Electromagnetic Valve Train

机译:带有电磁阀系的汽油发动机的单个气缸空燃比估计

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For the multi cylinder gasoline engine, the consistency of each cylinder is an important index to affect the emission and the power. In this paper, in order to reduce the air-fuel ratio (A/F) maldistribution of the engine based on the electromagnetic valve train (EMVT), an individual cylinder A/F estimation algorithm is proposed for the individual cylinder A/F control. Based on the analysis of the hybrid and transfer models of the exhaust of each cylinder in steady state, an individual A/F observer is established by using Kalman filter algorithm. Then the unknown parameters in the observer are identified by the differential evolution(DE) algorithm. Only a single wide area exhaust oxygen(UEGO) sensor is needed to identify the unknown parameters and estimate the A/F of each cylinder. The combined simulation of GT-Power and Simulink validates the effectiveness of the proposed estimation approach. The results show that the proposed method can provide good estimation results under steady-state condition.
机译:对于多气缸汽油发动机,每个气缸的一致性是影响排放和功率的重要指标。为了减少基于电磁气门机构(EMVT)的发动机的空燃比(A / F)分布不均,针对单个气缸的A / F控制提出了单个气缸的A / F估计算法。 。在分析稳态时每个气缸排气混合模型和传递模型的基础上,采用卡尔曼滤波算法建立了一个独立的空燃比观测器。然后通过微分进化算法确定观测器中的未知参数。仅需要一个广域排气氧气(UEGO)传感器即可识别未知参数并估算每个气缸的空燃比。 GT-Power和Simulink的组合仿真验证了所提出的估算方法的有效性。结果表明,该方法在稳态条件下可以提供良好的估计效果。

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