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Optimizing Fuel Consumption and Pollutant Emissions of a Spark Ignition Engine for Eco-Driving Applications

机译:优化用于生态驾驶应用的火花点火发动机的燃油消耗和污染物排放

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The transportation sector is a major contributor to both air pollution and greenhouse gas emissions. While optimizing fuel consumption reduces CO2 emissions, it can increase fuel-rich operation and cause higher HC and CO emissions. A simplified emissions model is thus introduced in order to account for the impact of air/fuel ratio on both the exhaust concentration of regulated pollutants and the catalyst efficiency. This model is used to solve the eco-driving problem with dynamic programming and a weighted objective function. An emission-centered and a consumption-centered scenario are compared on various driving cycles and with several time constraints. The optimal driving style in terms of emissions shows a substantial decrease in CO and HC while consumption stays relatively stable and NOx emissions slightly increase.
机译:运输部门是造成空气污染和温室气体排放的主要因素。优化燃料消耗可减少二氧化碳排放量,但它可以增加燃料丰富的运行并导致更高的HC和CO排放量。因此引入了简化的排放模型,以考虑空燃比对受控污染物的排放浓度和催化剂效率的影响。该模型用于通过动态规划和加权目标函数来解决生态驾驶问题。在不同的驾驶周期和几个时间限制下,以排放为中心和以消耗为中心的情景进行了比较。就排放而言,最佳驾驶方式显示出CO和HC的大幅降低,而消耗保持相对稳定,而NOx排放则略有增加。

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