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Analysis of traffic flow with micro-cars with respect to safety and environmental impact

机译:分析微型汽车的交通流量对安全和环境的影响

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This study analyzes the characteristics of traffic flow in the presence of micro-cars in a vehicle mix. A two-lane multi-cell traffic cellular automaton (TCA) model is formulated to simulate mixed traffic flow comprising conventional passenger cars and micro-cars. The segments of an urban highway and arterial road, both with two lanes and measuring 700 m in length, are simulated; the latter includes an intersection delay with a signal cycle at the midpoint. Traffic flows with different proportions of micro-cars are investigated in the simulation. Four aspects of traffic conditions are calculated: the number of lane changes, the number of decelerations, the coefficient of speed variation (which may be indicative of safety performance), and the HC, CO, and NOx emissions (as a measure of environmental impact). The simulation results suggest that mixed flow with micro-cars leads to higher frequencies of lane-changing on both highways and arterial roads, although the incremental change on the latter is smaller. With the introduction of micro-cars on the highway, the frequency of decelerations increases in free flow and decreases in congested flow; however, on the arterial road, it decreases the frequency of decelerations and has an insignificant impact on free flow. The introduction of micro-cars has a similar impact on the coefficient of speed variation. Under free flow conditions on highways, the introduction of micro cars has a negative influence on the three aforementioned parameters related to safety. However, for free flow on arterial roads or congested flow on highways and arterial roads, the results are inconclusive because the effect of micro-cars is contradictory in terms of the three parameters. Vehicle emissions, such as HC, CO, and NOx, increase during free flow on highways, but are always lower on arterial roads.
机译:这项研究分析了混合动力车中存在微型汽车时的交通流量特征。制定了两车道多单元交通蜂窝自动机(TCA)模型,以模拟包括常规乘用车和微型汽车在内的混合交通流量。模拟了两条具有两个车道且长度为700 m的城市高速公路和主干路段;后者包括在中点具有信号周期的相交延迟。在仿真中研究了不同比例的微型汽车的交通流量。计算交通状况的四个方面:车道变更次数,减速度次数,速度变化系数(可能表示安全性能)以及HC,CO和NOx排放(作为对环境影响的衡量标准) )。仿真结果表明,微型汽车的混合流动导致高速公路和主干道的换道频率更高,尽管后者的增量变化较小。随着高速公路上微型汽车的出现,减速的频率在自由流动中增加,在拥挤流动中减少。但是,在主干道路上,它减少了减速的频率,并且对自由流动的影响很小。微型汽车的推出对速度变化系数具有类似的影响。在高速公路上自由流动的条件下,微型汽车的引入对与安全相关的上述三个参数产生了负面影响。但是,对于主干道上的自由流动或高速公路和主干道上的拥挤流量,结果是不确定的,因为微型汽车的影响在这三个参数上是矛盾的。 HC,CO和NOx等车辆排放物在高速公路上自由流动期间会增加,但在干道上总是较低。

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