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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Properties analyses for the heterogeneous nonmotorized vehicle traffic based on cellular automaton model
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Properties analyses for the heterogeneous nonmotorized vehicle traffic based on cellular automaton model

机译:基于元胞自动机模型的异构非机动车交通特性分析。

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摘要

As traffic phenomena can be explained by physical method, this interdisciplinary domain has attracted many physicists to explore. The primary object of this research is to reveal the physical characteristics of heterogeneous nonmotorized vehicle traffic composing of conventional bicycles and electric bicycles. Cellular automaton (CA) model is an effective method to reveal the characteristics of the traffic, so a new CA model is proposed to simulate the flow characteristics, overtaking maneuvers patterns and segregation effect in the heterogeneous traffic. In order to realistically describe the traffic characteristics, the new model incorporates the honk effect, performance variance and erratic riding behavior of the nonmotorized vehicles. The simulations achieve three conclusions. First, increasing the ratio of electric bicycles can obtain higher flow and increase the number of overtaking maneuvers. Second, the honk can influence the density-flow diagram and stir up more overtaking maneuvers in the intermediate density region. Third, the existence of segregation effect which means conventional bicycles and electric bicycles could respectively gather together to form clusters is verified and elucidated in the heterogeneous traffic.
机译:由于交通现象可以用物理方法来解释,因此这个跨学科领域吸引了许多物理学家去探索。这项研究的主要目的是揭示由常规自行车和电动自行车组成的非均质非机动车交通的物理特征。元胞自动机(CA)模型是一种显示交通特征的有效方法,因此提出了一种新的CA模型来模拟异构交通中的交通特征,超车操作模式和隔离效果。为了真实地描述交通特征,新模型结合了非机动车辆的喇叭声效果,性能差异和不稳定的行驶行为。仿真得出三个结论。首先,增加电动自行车的比例可以获得更高的流量,并增加超车次数。其次,鸣笛会影响密度流图,并在中间密度区域引发更多的超车操作。第三,在异类交通中验证并阐明了隔离效应的存在,即传统自行车和电动自行车可以分别聚集在一起形成簇。

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