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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Dual-UEGO Active Catalyst Control for Emissions Reduction: Design and Experimental Validation
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Dual-UEGO Active Catalyst Control for Emissions Reduction: Design and Experimental Validation

机译:双重UEGO活性催化剂控制以减少排放:设计和实验验证

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摘要

This paper investigates active control of an aftertreat-ment system for a conventional spark ignition engine equipped with one or two three-way catalysts and two oxygen sensors. The control objective is to maximize the simultaneous conversion efficiencies of oxides of nitrogen and unburned hydrocarbons. Linear exhaust gas oxygen (EGO) sensors are used to measure air-fuel (A/F) ratio upstream and downstream of each catalyst. A series controller configuration is adopted. The upstream controller provides relatively rapid response to disturbances on the basis of measured feedgas A/F ratio, while the downstream controller uses the feedgas and post-catalyst A/F ratio measurements to compensate for the bias corrupting the feedgas A/F ratio measurement. The performance and robustness of the proposed control system in the face of noise and model uncertainty are first evaluated through extensive simulations. The control strategy is then experimentally verified in a dynamometer test cell and its performance compared with an existing proprietary controller that is based on the more common switching-type A/F ratio sensors.
机译:本文研究了配备有一个或两个三效催化剂和两个氧传感器的常规火花点火发动机的后处理系统的主动控制。控制目标是使氮氧化物和未燃烧的碳氢化合物的同时转化效率最大化。线性废气氧气(EGO)传感器用于测量每种催化剂上游和下游的空燃比(A / F)。采用串联控制器配置。上游控制器根据测得的进料气空燃比提供相对快速的干扰响应,而下游控制器使用进料气和催化剂后空燃比的测量值来补偿偏置进料气空燃比的测量值。首先通过广泛的仿真评估了所提出的控制系统在面对噪声和模型不确定性时的性能和鲁棒性。然后,在测功机测试单元中对控制策略进行了实验验证,并将其与基于更常见的开关式A / F比率传感器的现有专有控制器进行了比较。

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