ANALYSIS OF LANE-BLOCKING EVENTS WITH AN ANALYTICAL DYNAMIC TRAFFIC ASSIGNMENT MODEL

Der-Horng Lee, D. Boyce, B. Janson
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引用次数: 1

Abstract

An analytical-based dynamic traffic assignment (DTA) model intended for off-line analysis and evaluation of non-recurring lane-blocking events is proposed. Formulated as a variational inequality (VI), this model solves an ideal dynamic user-optimal (DUO) route choice problem. A diagonalization algorithm is proposed to solve the model to a prespecified convergence using a targe-scale, real-life traffic network. Adjustments of link capacities triggered by external lane-blocking events and internal modeled traffic phenomena are explicitly considered in the solution algorithm to capture queue formation and dissipation. The proposed solution procedure approximates route choices based on anticipatory and non-anticipatory traffic
基于动态交通分配分析模型的车道阻塞事件分析
提出了一种基于分析的动态交通分配(DTA)模型,用于非重复性车道阻塞事件的离线分析和评估。该模型用变分不等式(VI)表示,解决了一个理想动态用户最优(DUO)路径选择问题。提出了一种对角化算法,利用目标尺度的实际交通网络将模型求解到预定的收敛点。在求解算法中明确考虑了外部车道阻塞事件和内部建模交通现象触发的链路容量调整,以捕获队列的形成和消散。所提出的求解过程近似于基于预期和非预期交通的路线选择
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