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ADAPTIVE AIR FUEL RATIO CONTROLS IN PRESENCE OF OXYGEN SENSOR FAULTS

机译:存在氧气传感器故障时的自适应空气燃料比控制

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Fault monitoring of the upstream universal exhaust gas oxygen (UEGO) sensor, as mandated by the California air resources board (CARB), is a necessary action to maintain the performance of the operation of the air-fuel ratio (AFR) control system and indicate the need for maintenance when a fault is present which could potentially lead to exceeding the emissions limits. When the UEGO sensor fault is accurately diagnosed, i.e. fault is detected, direction is identified and magnitude is estimated, tuning of the controller gains can be performed accurately with minimal calibration efforts. Presented in this paper is a control strategy that utilizes the type, direction and magnitude of fault detected to adapt the gains of the controller and update the parameters of the Smith predictor (SP) in order to maintain the stability of AFR control loop. The proposed approach has been validated on a vehicle (Mustang V6 3.7L) equipped with ATI No-Hooks rapid prototyping system. Different fault types and magnitudes were tested and the tailpipe emissions were assessed on federal test procedure (FTP) cycles.
机译:根据加利福尼亚州空气资源委员会(CARB)的要求,对上游通用排气氧(UEGO)传感器进行故障监控是维持空燃比(AFR)控制系统运行性能并指示故障的必要措施。存在故障(可能会导致超出排放限值)的维护需求。当准确诊断出UEGO传感器故障时,即检测到故障,确定方向并估算幅度时,可以用最少的校准工作来精确地执行控制器增益的调整。本文提出了一种控制策略,该策略利用检测到的故障的类型,方向和大小来调整控制器的增益并更新Smith预估器(SP)的参数,以保持AFR控制回路的稳定性。该方法已在装有ATI No-Hooks快速原型系统的车辆(Mustang V6 3.7L)上得到验证。测试了不同的故障类型和大小,并根据联邦测试程序(FTP)周期评估了排气管排放。

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