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Investigating the influence of highway traffic flow condition on pollutant emissions using driving simulators

机译:使用驾驶模拟器调查高速公路交通状况对污染物排放的影响

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摘要

In the last 20 years the attention of international organizations towards air pollution has been improved, leading to definition of laws and regulations. In order to evaluate strategies and policies, forecasting tools have been adopted by institutions. Currently, the estimation of traffic emissions is based on static models, in which the amount of pollutant is computed as a function of average parameters obtained on a single road stretch. The well-known traffic increase of recent years has significantly changed the actual flow conditions, producing a strong rise of interferences. As this facet affects the operating condition of each vehicle, the use of a standard emission model at high traffic interference can lead to some inaccuracies. In such cases, instantaneous emission models introduce deeper capabilities; essentially, the pollutant prediction is directly tied to the engine vehicle operation point in reallike traffic condition. This second modelling approach has been adopted in the current work. A complete lumped parameter vehicle model has been built to be used as a virtual on-road emission/fuel consumption test unit. Investigations have highlighted the dependence of emission level and fuel consumption on drivers' behaviour; indeed, the analysis took advantage of the experiments carried out in the virtual reality laboratory: on a typical highway geometry, characterized by a dual lane carriageway with three lanes each, three different flow conditions have been simulated. Once the relationship between highway interference level and drivers' behaviour has been evidenced (in terms of emissions and fuel consumption), a relation between highway interference level and emissions/fuel consumption has been highlighted. Finally, in order to assess the differences between static and instantaneous emission models, a comparative analysis has been carried out. .
机译:在过去的20年中,国际组织对空气污染的关注得到了改善,从而形成了法律法规。为了评估战略和政策,机构已采用了预测工具。当前,交通排放的估算是基于静态模型的,其中污染物的数量是根据在一条道路上获得的平均参数来计算的。近年来,众所周知的流量增加已大大改变了实际流量条件,产生了很大的干扰。由于此方面会影响每辆车的运行状况,因此在高交通干扰下使用标准排放模型可能会导致某些不准确之处。在这种情况下,瞬时排放模型会引入更深的功能。从本质上讲,在真实交通状况下,污染物的预测直接与发动机的工作点相关。在当前工作中已经采用了第二种建模方法。已经建立了完整的集总参数车辆模型,以用作虚拟的道路排放/燃料消耗测试单元。调查强调了排放水平和燃油消耗对驾驶员行为的依赖性;的确,分析利用了在虚拟现实实验室中进行的实验的优势:在典型的高速公路几何图形上,其特征是具有三个车道的双车道行车道,已经模拟了三种不同的流动条件。一旦证明了公路干扰水平与驾驶员行为之间的关系(就排放量和燃油消耗而言),公路干扰水平与排放量/燃油消耗之间的关系就得到了强调。最后,为了评估静态和瞬时排放模型之间的差异,进行了比较分析。 。

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