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Cycle-by-Cycle Queue Length Estimation for Signalized Intersections Using Multi-Source Data

ZhongyuYinhai WangQing QingCaiWuYinhaiLinboLi

2015哈尔滨工业大学学报:英文版Engineering被引 4

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摘要

In order to estimate vehicular queue length at signalized intersections accurately and overcome the shortcomings and restrictions of existing studies especially those based on shockwave theory,a new methodology is presented for estimating vehicular queue length using data from both point detectors and probe vehicles. The methodology applies the shockwave theory to model queue evolution over time and space. Using probe vehicle locations and times as well as point detector measured traffic states,analytical formulations for calculating the maximum and minimum( residual) queue length are developed. The proposed methodology is verified using ground truth data collected from numerical experiments conducted in Shanghai,China. It is found that the methodology has a mean absolute percentage error of 17. 09%,which is reasonably effective in estimating the queue length at traffic signalized intersections. Limitations of the proposed models and algorithms are also discussed in the paper.更多还原

引用本文(GB/T 7714)

Zhongyu, Yinhai Wang, Qing Qing, 等. Cycle-by-Cycle Queue Length Estimation for Signalized Intersections Using Multi-Source Data[J]. 哈尔滨工业大学学报:英文版, 2015.

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