The Braess's Paradox (BP) is the observation that adding one or more roads to the existing road network will counter-intuitively increase traffic congestion and slow down the overall traffic flow. Previously, the existence of the BP is modeled using the static traffic assignment model, which solves for the user equilibrium subject to network flow conservation to find the equilibrium state and distributes all vehicles instantaneously. Such approach neglects the dynamic nature of real-world traffic, including vehicle behaviors and the interaction between vehicles and the infrastructure. As such, this article proposes a dynamic traffic network model and empirically validates the existence of the BP under dynamic traffic. In particular, we use microsimulation environment to study the impacts of an added path on a grid network. We explore how the network flow, vehicle travel time, and network capacity respond, as well as when the BP will occur.
翻译:布雷斯悖论是指增加一条或多条道路到既有道路网后,交通拥堵会出现逆势增加,从而导致整体交通流的减慢。以往,布雷斯悖论的存在都是用静态交通分配模型来建模,通过解决用户均衡和流量守恒等条件来寻找均衡状态并瞬间安排车辆流量的分布。这种方法忽略了现实世界中交通的动态性,包括车辆行为和车辆与基础设施之间的相互作用。因此,本文提出了一种动态交通网络模型,并在动态交通情境下验证了布雷斯悖论的存在性。具体而言,我们运用微观模拟环境研究了在网格网络中增加路径的影响,探究了网络流量、车辆通行时间和网络容量的响应,以及布雷斯悖论出现的时机。