高性能发动机碳筒空燃比估算

C. Corvino, A. Oliva, R. Zanasi
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引用次数: 2

摘要

日益严格的汽车排放限制要求汽车制造商减少蒸发排放系统中碳氢化合物的数量。活性炭罐用于从大多数车辆配备的燃料蒸发系统中捕获汽油蒸气已有30年的历史。最新修订的低排放车辆计划,被称为LEV-II,最近由CARB(加州空气资源委员会)通过,强制车辆为零排放车辆(ZEV或电池电动汽车),碳罐必须经常清洗:这可能导致质量差怠速状态和废气排放水平增加。本文描述了一种输入高增益观测器算法来估计罐内空气/燃料混合物,以改善怠速发动机粗糙度和燃料蒸发排放。此外,还将空燃比(AFR)系统辨识用于观测器性能仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Carbon canister air fuel ratio estimation on high performance engine
The increasingly stringent vehicle emission constraints press on the car manufacturers to decrease in hydrocarbons quantities from evaporative emission system. Activated carbon canister has been used for 30 years to capture the gasoline vapors from fuel evaporative system whose most of vehicles are equipped. The newer amendments on Low-Emission Vehicle programs, known as LEV-II, recently adopted by CARB (California Air Resources Board), impose on the vehicles to be Zero Emission Vehicles (ZEV or battery electric vehicles) and that the carbon canister has to be purged frequently: this can cause poor quality idle condition and exhaust emission levels increase as well. The article describes an input high gain observer algorithm to estimate the canister air/fuel mixture in order to improve both idle speed engine roughness and fuel evaporative emissions. Furthermore system identification of Air-to-Fuel Ratio (AFR) has been used for observer performance simulations.
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