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An intersection-movement-based stochastic dynamic user optimal route choice model for assessing network performance

机译:一种基于交叉运动的随机动态用户最优路径选择模型,用于评估网络性能

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摘要

Different from traditional methods, this paper formulates the logit-based stochastic dynamic user optimal (SDUO) route choice problem as a fixed point (FP) problem in terms of intersection movement choice probabilities, which contain travelers’ route information so that the realistic effects of physical queues can be captured in the formulation when a physical-queue traffic flow model is adopted, and that route enumeration and column generation heuristics can be avoided in the solution procedure when efficient path sets are used. The choice probability can be either destination specific or origin–destination specific, resulting into two formulations. To capture the effect of physical queues in these FP formulations, the link transmission model is modified for the network loading and travel time determination. The self-regulated averaging method (SRAM) was adopted to solve the FP formulations. Numerical examples were developed to illustrate the properties of the problem and the effectiveness of the solution method. The proposed models were further used to evaluate the effect of information quality and road network improvement on the network performance in terms of total system travel time (TSTT) and the cost of total vehicle emissions (CTVE). Numerical results show that providing better information quality, enhancing link outflow capacity, or constructing a new road can lead to poor network performance.
机译:与传统方法不同,本文将基于对数的随机动态用户最优(SDUO)路线选择问题公式化为以交叉点移动选择概率为定点(FP)的问题,其中包含了旅行者的路线信息,从而使旅行社的现实效果成为现实。当采用物理队列流量模型时,可以在公式中捕获物理队列,并且当使用有效路径集时,可以在解决过程中避免路由枚举和列生成启发式算法。选择概率可以是特定于目的地的,也可以是特定于始发地-目的地的,从而产生两种形式。为了在这些FP公式中捕获物理队列的影响,对链路传输模型进行了修改,以确定网络负载和行程时间。采用自调节平均法(SRAM)求解FP公式。通过数值算例说明了问题的性质和求解方法的有效性。拟议的模型进一步用于评估信息质量和道路网络改善对网络性能的影响,包括总系统行驶时间(TSTT)和总车辆排放成本(CTVE)。数值结果表明,提供更好的信息质量,增强链接流出容量或修建新道路可能会导致网络性能下降。

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