标题: 车流动力学之连续减速模式
The Successive Deceleration Model of Kinetic Traffic Flow
作者: 傅昱瑄
Yu-Hsuan Fu
卓训荣
Hsun-Jung Cho
运输与物流管理学系
关键字: 介观车流;车流动力学;顺时速度变化;Mesoscopic traffic flow;Kinetic traffic flow;Instant velocity-changing
公开日期: 2006
摘要: 欲发展良好的交通控制解决交通问题需要有充足的资讯,在相关资讯中最重要且不易估算的就是车流量的预测,车流模式的发展就是朝此方向之研究,关于介观车流的相关研究国内相关研究仍未完整,尚有许多介观车流议题需要被讨论与研究,所以本研究欲藉由回顾较具重要性的介观的车流动力学模式,将其重要贡献与特性整理,并且建构一可较真确描述道路车流情形之介观车流模式。
本研究引入具有物理意义之减速度考虑项目,放松交互影响项中瞬时速度变化与未考虑有限空间因素影响,藉由将这些特性纳入并建构一新的介观车流之动力学方程之中;并且利用动差函数方式将本研究所建构的介观模式积分,可以获得以巨观参数─密度 、平均速度 与变异数 为主的巨观方程式;而后再以特征速度、均衡解与数值模拟加以分析该模式的特性,并获得因本研究引入等减速度可比以往研究的模式可多加解释的特性,比较不同超车机率下不同的加速度值,在低的超车机率下,等减速度会比较有差别,在高的超车机率下,等减速度看不出差别,因为可很自由的超车情况下,使用到等减速度的车辆相形较少,所以对整体较看不出差别。由此可知本研究所建构的介观车流动力学模式可较真确描地述更多车流情形。另外在撰写论文时,将本研究的想法与行为意义清楚传达,并将过程中的数学推导详细记录,希冀能对于介观车流有兴趣者有所帮助,以期许将来能有利于实际应用的发展。
In order to develop traffic control to solve traffic problem, we need sufficient information. The related and the most important information is to estimate quantity of traffic flow. Developing traffic flow model is one of ways to research. However, the research about mesoscopic traffic flow, gas-kinetic traffic flow, is not yet complete so we want to review some important researches and arrange the focus. And we construct a gas-kinetic traffic flow model in order to describe real traffic more.
In this research, we introduce uniform deceleration with physical meaning to relax instant velocity-changing and not consider finite space in interaction term and construct a new model. Then we use momentum function to obtain three macroscopic models with density , average velocity and variance . We use characteristic velocity, equilibrium and numerical simulation to analysis the accent of our model, and we know our model could describe more phenomenon than others.
Compared with different uniform decelerations in different passing probability conditions, we could observe that different uniform decelerations make difference in smaller passing probability. Different uniform decelerations make no difference in bigger passing probability, because cars use few uniform decelerations in dilute traffic. Therefore, our research could describe more traffic phenomenon. Besides, we explain our thought and the meaning of our model clear, and record mathematic processes explicitly. We hope this research could help those who are interested in mesoscopic traffic flow and help the development of real application.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009432530
http://hdl.handle.net/11536/81600
显示于类别:Thesis


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