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首页> 外文期刊>Transportation Research Part B: Methodological >A day-to-day dynamical model for the evolution of path flows under disequilibrium of traffic networks with fixed demand
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A day-to-day dynamical model for the evolution of path flows under disequilibrium of traffic networks with fixed demand

机译:需求固定的交通网络不平衡下路径流动演化的每日动力学模型

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Transportation networks are often subjected to perturbed conditions leading to traffic disequilibrium. Under such conditions, the traffic evolution is typically modeled as a dynamical system that captures the aggregated effect of paths-shifts by drivers over time. This paper proposes a day-to-day (DTD) dynamical model that bridges two important gaps in the literature. First, existing DTD models generally consider current path flows and costs, but do not factor the sensitivity of path costs to flow. The proposed DTD model simultaneously captures all three factors in modeling the flow shift by drivers. As a driver can potentially perceive the sensitivity of path costs with the congestion level based on past experience, incorporating this factor can enhance real-world consistency. In addition, it smoothens the time trajectory of path flows, a desirable property for practice where the iterative solution procedure is typically terminated at an arbitrary point due to computational time constraints. Second, the study provides a criterion to classify paths for an origin-destination pair into two subsets under traffic disequilibrium: expensive paths and attractive paths. This facilitates flow shifts from the set of expensive paths to the set of attractive paths, enabling a higher degree of freedom in modeling flow shift compared to that of shifting flows only to the shortest path, which is behaviorally restrictive. In addition, consistent with the real-world driver behavior, it also helps to preclude flow shifts among expensive paths. Improved behavioral consistency can lead to more meaningful path/link time-dependent flow profiles for developing effective dynamic traffic management strategies for practice. The proposed DTD model is formulated as the dynamical system by drawing insights from micro-economic theory. The stability of the model and existence of its stationary point are theoretically proven. Results from computational experiments validate its modeling properties and illustrate its benefits relative to existing DTD dynamical models. (C) 2015 Elsevier Ltd. All rights reserved.
机译:运输网络经常受到扰动,导致交通不平衡。在这种情况下,交通量演变通常被建模为一个动态系统,该系统捕获驾驶员随时间推移而产生的路径转移的合计效应。本文提出了一种日常(DTD)动力学模型,该模型弥补了文献中的两个重要空白。首先,现有的DTD模型通常会考虑当前路径流量和成本,但不考虑路径成本对流量的敏感性。拟议的DTD模型同时捕获了驱动程序对流量变化建模的所有三个因素。由于驾驶员可能会根据过去的经验来感知道路成本与拥堵程度之间的敏感性,因此纳入此因素可以增强现实世界的一致性。另外,它使路径流动的时间轨迹变得平滑,这是实践中的理想属性,在该实践中,由于计算时间的限制,迭代求解过程通常在任意点处终止。其次,该研究提供了一个标准,可以将流量不平衡下的原点-目的地对路径分为两个子集:昂贵路径和吸引人路径。与将流只转移到最短路径上相比,这有利于从昂贵的路径组到有吸引力的路径上的流转移,与仅将流转移到最短路径上相比,在建模流转移方面具有更高的自由度。此外,与现实世界中的驱动程序行为一致,它还有助于防止在昂贵路径之间进行流转移。改进的行为一致性可以导致更有意义的路径/链接时间相关流配置文件,从而为实践开发有效的动态流量管理策略。通过从微观经济学理论中汲取见解,将拟议的DTD模型构建为动力系统。理论上证明了该模型的稳定性及其不动点的存在。计算实验的结果验证了其建模特性,并说明了其相对于现有DTD动力学模型的优势。 (C)2015 Elsevier Ltd.保留所有权利。

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