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Origin-Destination Estimation Using Probe Vehicle Trajectory and Link Counts

机译:使用探针车辆轨迹和链接计数来源目的地估计

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摘要

This paper presents two origin-destination flow estimation models using sampled GPS positions of probe vehicles and link flow counts. The first model, named as SPP model (scaled probe OD as prior OD), uses scaled probe vehicle OD matrix as prior OD matrix and applies conventional generalized least squares (GLS) framework to conduct OD correction using link counts; the second model, PRA model (probe ratio assignment), is an extension of SPP in which the observed link probe ratios are also included as additional information in the OD estimation process. For both models, the study explored a new way to construct assignment matrices directly from sampled probe trajectories to avoid sophisticated traffic assignment process. Then, for performance evaluation, a comprehensive numerical experiment was conducted using simulation dataset. The results showed that when the distribution of probe vehicle ratios is homogeneous among different OD pairs, both proposed models achieved similar degree of improvement compared with the prior OD pattern. However, under the case that the distribution of probe vehicle ratios is heterogeneous across different OD pairs, PRA model achieved more significant reduction on OD flow estimations compared with SPP model. Grounded on both theoretical derivations and empirical tests, the study provided in-depth discussions regarding the strengths and challenges of probe vehicle based OD estimation models.
机译:本文呈现了使用探针车辆的采样GPS位置和链路流量的两个原始目的地流程估算模型。名为SPP模型的第一个模型(作为先前OD的缩放探测OD),使用缩放探头车辆OD矩阵作为先前的OD矩阵,并使用常规的广义最小二乘(GLS)框架使用链路计数进行OD校正;第二模型PRA模型(探测比率分配)是SPP的扩展,其中观察到的链路探测比也包括在OD估计过程中的附加信息。对于这两个模型,该研究探索了一种新方法来直接从采样探测轨迹构建分配矩阵,以避免复杂的流量分配过程。然后,对于性能评估,使用模拟数据集进行综合数值实验。结果表明,当探测车辆比率的分布在不同的OD对中均匀时,与先前的OD模式相比,两个提出的模型都实现了类似程度的改进程度。然而,在探针车辆比的分布在不同OD对的情况下,PRA模型与SPP模型相比,对OD流程估计的达到更大的降低。基于理论衍生和经验测试,研究提供了关于基于探针的OD估计模型的优点和挑战的深入讨论。

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