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Improving the transient emission performance of a Diesel engine by input shaping techniques

机译:通过输入整形技术改善柴油机的瞬态排放性能

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Caused by the demanding and more and more stringent legislated emission limits for passenger car engines, the effect of transient emission peaks becomes more and more important for the overall emission limits. In case of Diesel engines, the two main concerned pollutants are NOx and PM and typically the compliance with the legislation is achieved by a suitable control of the fuel and air system of the engine. Especially during transients the coordination of both loops is crucial for the overall performance. Typically the control is separated in the two loops, where coupling effects and different time scales and dynamics can lead to undesired overshoots during transients. Against this background in this work an input shaping technique to reduce the transient emission peaks is proposed. The input shaping is based on an identified response model of the transient emission profile and used to determine suitable correction trajectories which can be applied to an existing calibration and reduce undesired effects during transients while allowing to keep the base calibration and control structure of the engine control unit. In this study input shaping is applied for the rail pressure and injection parameters to reduce the NOx emissions while the PM emissions, efficiency and noise levels should be kept similar to the nominal operation. The proposed strategy is evaluated on a 2l turbocharged common rail passenger car Diesel engine mounted at a dynamic engine testbench and promising results are achieved.
机译:由于对乘用车发动机的排放限值要求越来越严格,导致瞬态排放峰值对总体排放限值的影响越来越重要。对于柴油发动机,涉及的两个主要污染物是NOx和PM,通常通过适当控制发动机的燃油和空气系统来实现对法规的遵守。特别是在瞬态期间,两个环路的协调对于整体性能至关重要。通常,控制是在两个回路中分开的,其中耦合效应以及不同的时标和动态特性可能会导致瞬态过程中出现不希望的过冲。在这项工作的背景下,提出了一种减少瞬态发射峰的输入整形技术。输入整形基于所识别的瞬态排放曲线的响应模型,并用于确定合适的校正轨迹,该轨迹可应用于现有校准并减少瞬态过程中的不良影响,同时允许保留发动机控制的基本校准和控制结构单元。在这项研究中,输入整形适用于轨道压力和喷射参数,以减少NOx排放,而PM排放,效率和噪声水平应保持与标称运行相似。在安装在动态发动机试验台上的2l涡轮增压共轨乘用车柴油发动机上对提出的策略进行了评估,并获得了可喜的结果。

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