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Development of an EKF Observer for an automotive SCR system

机译:开发汽车SCR系统的EKF观察者

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In the recent years, engine developer attention is focused on the application of advanced control strategies for the SCR system, considered as the leading technology for the abatement of NOXemissions in Diesel engines. The most challenging task in SCR control is the optimization of the urea dosing strategy while reaching the balance between high NOXreduction efficiency and low NH3slip in the tailpipe, especially during transients. In order to accomplish this task, an Extended Kalman Filter (EKF) estimator is developed, to be integrated in the closed loop control of SCR urea dosing. The EKF estimator is applied to a one-state model, in which the ammonia coverage ratio θ is the only dynamic process taken into account. To improve the model accuracy, an additional dynamics, related to total ammonia adsorption capacity Ω, is considered while conceiving the EKF. The recursive EKF algorithm allows achieving enhanced estimation accuracy with a slight increase of the computational burden that is still suitable with on-board application.
机译:近年来,发动机开发人员关注的关注对SCR系统的先进控制策略的应用,被认为是柴油发动机中减少中低氧化的领先技术。 SCR控制中最具挑战性的任务是尿素计量策略的优化,同时在尾管中达到高NOxremcuction效率和低NH3slip之间的平衡,尤其是在瞬态期间。为了实现这项任务,开发了一个扩展的卡尔曼滤波器(EKF)估计器,以集成在SCR尿素的闭环控制中。 EKF估计器应用于一个状态模型,其中氨覆盖率θ是考虑的唯一动态过程。为了提高模型精度,在构建EKF的同时考虑与总氨吸附容量ω相关的额外动态。递归EKF算法允许实现增强的估计精度,略微增加计算负担,仍然适用于板载应用。

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