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Model-Based Estimation and Control System Development in a Urea-SCR Aftertreatment System

机译:基于模型的估计和控制系统开发尿素-CC后处理系统

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In this paper, a model-based linear estimator and a nonlinear control law for an Fe-zeolite, urea-selective catalytic reduction (SCR) catalyst for heavy-duty diesel engine applications is presented. The novel aspect of this work is that the relevant species, NO, NO{sub}2 and NH{sub}3 are estimated and controlled independently. The ability to target NH{sub}3 slip is important not only to minimize urea consumption, but also to reduce this unregulated emission. Being able to discriminate between NO and NO{sub}2 is important for two reasons. First, recent Fe-zeolite catalyst studies suggest that NO{sub}x reduction is highly favored by the NO{sub}2-based reactions. Second, NO{sub}2 is more toxic than NO to both the environment and human health. The estimator and control law are based on a 4-state model of the urea-SCR plant. A linearized version of the model is used for state estimation while the full nonlinear model is used for control design. An experimentally validated, higher order simulation is used to evaluate the performance of the closed-loop system. For the cases considered, the control strategy uses less urea, produces less NH{sub}3 slip, and less tailpipe NO{sub}x than a similar strategy where NO and NO{sub}2 are assumed as all NO during estimation and control law implementation.
机译:本文提出了一种基于模型的线性估计器和用于Fe-沸石的非线性控制法,尿素选择性催化还原(SCR)催化剂用于重型柴油发动机应用。这项工作的新颖方面是估计和控制相关物种,不,没有{Sub} 2和NH {Sub} 3。瞄准NH {Sub} 3滑动的能力不仅要最大限度地减少尿素消耗,还可以减少这种不受管制的发射。能够区分否而无{sub} 2的两个原因很重要。首先,近期的Fe-沸石催化剂研究表明,NO {sub} x减少是基于NO {sub} 2的反应。其次,没有{sub} 2比环境和人类健康均多毒性。估计和控制法基于尿素-Cr植物的4状态模型。该模型的线性化版本用于状态估计,而全非线性模型用于控制设计。通过实验验证的更高阶仿真来评估闭环系统的性能。对于考虑的情况,控制策略使用较少的尿素,产生较少的NH {Sub} 3滑动,而不是在估计和控制期间假设否而未{Sub} 2的类似策略的尾气管道{sub} x。法律实施。

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