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Design and experimental validation of three way catalyst age estimator and Fisher information analysis for optimal sensor selection

机译:三种催化剂时代估计和Fisher信息分析的设计与实验验证,以获得最佳传感器选择

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摘要

Three way catalysts (TWCs) are installed downstream of internal combustion engines to mitigate the engine out pollutants generated from combustion. Accurate engine control systems are needed to achieve high conversion efficiency during vehicle operation and optimize TWC inputs. Accounting for TWC internal dynamics within the exhaust emission control design is key to enable improved engine and catalyst performance. However, since internal TWC dynamics cannot be directly measured, modeling and estimation of the converter's dynamics are essential for the development of high performing exhaust emission control strategies. In this paper, a Dual Extended Kalman Filter (dEKF) is designed and experimentally validated for the estimation of both the TWC oxygen storage level,Φ, and age-dependent oxygen storage capacity, OSC. The estimator design is based on an experimentally validated physics-based TWC model developed by the authors in a previous work. Observer validation and performance evaluation are conducted over transient drive cycles in a chassis dynamometer. Moreover, observability properties and related estimation performance are analyzed using different sensor technologies. It is found out that using switch-type oxygen sensors in place of wideband oxygen sensors leads to a loss of observability within the model, preventing real-time OSC determination and, therefore, aging estimation. A Fisher information quantity study is developed and presented that provides quantitative guidelines for the optimization of TWC sensor design. Finally, the observer is tested on real hardware via rapid control prototyping.
机译:三种方式催化剂(TWC)安装在内燃机的下游,以减轻燃烧产生的发动机污染物。准确的发动机控制系统需要在车辆操作期间实现高转换效率并优化TWC输入。废气排放控制设计中的TWC内部动态核算是实现改善发动机和催化剂性能的关键。然而,由于无法直接测量内部TWC动态,因此转换器动态的建模和估计对于高性能的排气控制策略的发展至关重要。本文设计了一种双扩展卡尔曼滤波器(DEKF),用于估计TWC氧气储能水平,φ和年龄依赖性氧气存储容量OSC。估算器设计基于由前一项工作中作者开发的基于实验验证的基于物理学的TWC模型。观察者验证和性能评估在底盘测功机中的瞬态驱动周期进行。此外,使用不同的传感器技术分析可观察性性质和相关估计性能。发现使用交换机型氧气传感器代替宽带氧传感器,导致模型内的可观测性丧失,防止实时OSC确定,因此,老化估计。开发并提出了Fisher信息数量研究,提供了用于优化TWC传感器设计的定量指南。最后,观察者通过快速控制原型测试在实际硬件上进行测试。

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