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Day-to-day and within-day network dynamics encapsulating hyperbolic traffic behavior

机译:每日和每日的网络动态封装了双曲线的流量行为

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In most historical studies, link cost function applied in solving the dynamic traffic assignment problem is assumed as a separable function of link flaw itself. Further developments of a non-linear theory for the network dynamics in the presence of hyperbolic traffic behavior are presented in this paper. By dividing a time period of interest into several minute intervals, both day-to-day and within-day evolutions of system variables are embedded in the proposed formulation simultaneously. In particular, dynamic traffic flow model, the Lighthill-Whitham-Richards model, is introduced into whole system dynamics and the corresponding path cost operator is also derived. Based on this methodology, the network traffic dynamics simulator (NTDS) is developed and the simulation results of a real road network at Hsinchu Science-based Industrial Park (HSIP) are also presented. We numerically show that the steady state of proposed dynamic system satisfies the Wardrop's user equilibrium.
机译:在大多数历史研究中,在解决动态流量分配问题时应用的链路成本函数被认为是链路漏洞本身的可分离功能。本文介绍了在存在双曲线交通行为存在下网络动态的非线性理论的进一步发展。通过将兴趣的时间划分为几分钟间隔,日常到日常和日期的系统变量的演变同时嵌入在提出的配方中。特别是,引入整个系统动态的Lighthill-Whitham-Richards Model和相应的路径成本运算符也被引入动态交通流量模型。基于该方法,还开发了网络流量动态模拟器(NTD),并介绍了新竹工业园区(HSIP)的真正道路网络的仿真结果。我们的数字表明,所提出的动态系统的稳定状态满足Wardrop的用户平衡。

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