基于元胞自动机的双车道交通流仿真模型

K. Rawat, V. K. Katiyar, P. Gupta
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引用次数: 19

摘要

基于所有相关车辆的个体运动的道路交通微模拟现在被认为是描述、理解和管理道路交通的重要工具。元胞自动机是实现车辆运动的一种有效方法。CA是一种使用离散空间来表示域中每个元素的状态的方法,这种状态可以根据转换规则进行更改。将修正元胞大小和变加速度的元胞自动机纳什模型扩展到交通流的双车道元胞自动机模型。一套州规则被应用于提供变道机动。该模型实现了BJH模型中描述拥堵车辆行为的S-t-s规则,研究了交通流变化对车辆变道行为的影响。在s-t-s规则和制动规则的影响下,比较了车辆为避免碰撞而换道的单车道道路和双车道道路的流量。利用数值模拟结果分析了交通流的基本图,表明s-t-s概率比制动概率对变道机动的影响更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-Lane Traffic Flow Simulation Model via Cellular Automaton
Road traffic microsimulations based on the individual motion of all the involved vehicles are now recognized as an important tool to describe, understand, and manage road traffic. Cellular automata (CA) are very efficient way to implement vehicle motion. CA is a methodology that uses a discrete space to represent the state of each element of a domain, and this state can be changed according to a transition rule. The well-known cellular automaton Nasch model with modified cell size and variable acceleration rate is extended to two-lane cellular automaton model for traffic flow. A set of state rules is applied to provide lane-changing maneuvers. S-t-s rule given in the BJH model which describes the behavior of jammed vehicle is implemented in the present model and effect of variability in traffic flow on lane-changing behavior is studied. Flow rate between the single-lane road and two-lane road where vehicles change the lane in order to avoid the collision is also compared under the influence of s-t-s rule and braking rule. Using results of numerical simulations, we analyzed the fundamental diagram of traffic flow and show that s-t-s probability has more effect than braking probability on lane-changing maneuver.
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