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首页> 外文期刊>Transportation Research Procedia >Estimating Freeway Traffic Volume Using Shockwaves and Probe Vehicle Trajectory Data
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Estimating Freeway Traffic Volume Using Shockwaves and Probe Vehicle Trajectory Data

机译:使用冲击波和探测车辆轨迹数据估算高速公路交通量

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摘要

Abstract: Probe vehicle data are increasingly becoming the primary source of traffic data. In current practice, traffic volumes and speeds are collected from inductive loop or similar devices. As probe vehicle data become more widespread, it is imperative that methods are developed so that traffic state estimators like speed, density and flow can be derived from probe vehicle data as well. In this paper, a methodology to estimate traffic flow on a freeway based on probe vehicle trajectory data combined with traffic shockwave theory is proposed. In essence, probe vehicle trajectory can indicate the free-flowing and congested regimes. By using LWR kinematic wave model, a shockwave can be identified that separates both regimes. From the formation of the shockwave, flows for each regime are estimated. To identify the shockwave, k -means clustering is applied to the data. When applied to simulated data, the error of the estimated flow during free-flow ranges from -9% to 1% with an average of -5%. The estimated flow during congestion has an error of 0%. Based on the results, this paper shows that the proposed method can predict traffic flow with a reasonable accuracy under congested and free-flow conditions.
机译:摘要:探测车辆数据正日益成为交通数据的主要来源。在当前实践中,从感应环路或类似设备收集流量和速度。随着探测车辆数据的日益普及,必须开发各种方法,以便也可以从探测车辆数据中得出交通状态估算器,例如速度,密度和流量。本文提出了一种基于探测车辆轨迹数据并结合交通冲击波理论的高速公路交通流量估算方法。从本质上讲,探测车的轨迹可以指示自由流动和拥挤的状态。通过使用LWR运动波模型,可以识别将两种情况分开的冲击波。根据冲击波的形成,可以估算出每种状态的流量。为了识别冲击波,将k-均值聚类应用于数据。当应用于模拟数据时,在自由流动期间估计流量的误差范围为-9%至1%,平均为-5%。拥塞期间的估计流量具有0%的误差。基于结果,本文表明该方法可以在拥挤和自由流动的情况下以合理的精度预测交通流量。

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