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The Influence Analysis of the Acceleration Regimes on the Specific WLTC Test Cycle Regarding the Fuel Consumption and Pollutant Emissions for a Vehicle Equipped with a GMPDH

机译:关于具有GMPDH的车辆燃料消耗和污染物排放的特定WLTC测试循环的加速度制度的影响分析

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It is known that acceleration regimes have a decisive influence on fuel consumption and pollutant emissions. In this sense, the paper highlights the weight with which these regimes contribute to determining the level of fuel consumption and polluting emissions. In the first phase, all acceleration regimes specific to the current WLTC test cycle are selected. Using mathematical modeling with the AMESim platform, the cumulative (CO_2 emissions over the cycle) fuel consumption and pollutant emissions of HC, CO, NO_x, PM are determined. For comparison, the same magnitudes for the selected acceleration modes are then determined. This highlights the fact that transient acceleration regimes severely affect both fuel consumption and global emissions by determining the magnitude of these influences. This draws attention to the fact that the acceleration regimes specific to the current test cycle still require far-reaching investigations to optimize the powertrain performance for a vehicle equipped with a Diesel Hybrid powertrain.
机译:众所周知,加速度制度对燃料消耗和污染物排放具有决定性影响。从这个意义上讲,本文突出了这些制度促成了确定燃料消耗水平和污染排放水平的重量。在第一阶段,选择特定于当前WLTC测试循环的所有加速度制度。使用数学建模与AMESIM平台,确定累积(CO_2循环排放)HC,CO,NO_X,PM的燃料消耗和污染物排放。为了进行比较,然后确定所选择的加速度模式的相同幅度。这突出了通过确定这些影响的幅度,瞬态加速度制度严重影响燃料消耗和全球排放的事实。这提请注意当前测试周期所特有的加速度方案仍然需要深远的调查,以优化配备有柴油混合动力动力系的车辆的动力总成性能。

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