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Evaluating capacity of transportation operations with highway travel time reliability

机译:评估公路旅行时间可靠性的运输业务能力

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Highway traffic congestion is often considered part of routine operations and is anticipated with transportation travel times; however, severe and unexpected delays cause disruption to deliveries, schedules, operations, and other enterprise logistics. This paper includes a description of methods for changepoint detection applied to disaggregate vehicle speed and volume data to establish a transportation travel time reliability threshold. In the context of enterprise logistics and surface transportation, reliability is measured by the frequency of deviations from anticipated vehicle speeds associated with a given operating condition. In this paper, anticipated speeds are calculated as the speed values with the highest kernel density estimate (KDE) in lieu of traditional statistics of median or mean speed conditions. Specific complexities of transportation networks, such as stochastic system capacity, necessitates the identification of operational thresholds associated with rapid performance degradation. Results from a demonstration dataset (comprised of millions of observations) indicates a rapid decline in reliability near half of the capacity defined by traditional traffic models. Variability of the travel time reliability threshold was observed across geographic locations and years of observation, which conforms with concepts of stochastic system capacity based on inherent randomness of exogenous system factors.
机译:公路交通拥堵通常被认为是常规操作的一部分,并预计运输旅行时间;然而,严重和意外的延误导致交付,时间表,运营和其他企业物流中断。本文包括用于改变点检测的方法的描述,其应用于分解车速和体积数据以建立运输行程时间可靠性阈值。在企业物流和表面运输的背景下,通过与给定操作条件相关的预期车速的偏差频率来测量可靠性。在本文中,预期速度计算为具有最高内核密度估计(KDE)的速度值代替中位数或平均速度条件的传统统计数据。运输网络的特定复杂性,如随机系统容量,需要识别与快速性能下降相关的操作阈值。演示数据集(由数百万观测)组成的结果表明,传统交通模型所定义的容量的可靠性迅速下降。在地理位置和多年观察中观察到旅行时间可靠性阈值的可变性,这符合基于外源系统因素的固有随机性的随机系统容量的概念。

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