Real time queue length estimation for signalized intersections using travel times from mobile sensors |
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Authors: | Xuegang Ban Peng Hao Zhanbo Sun |
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Affiliation: | Department of Civil and Environmental Engineering, Rensselaer Polytechnic Institute (RPI), 110 Eighth Street, Room JEC 4034, Troy, NY 12180-3590, United States |
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Abstract: | We study how to estimate real time queue lengths at signalized intersections using intersection travel times collected from mobile traffic sensors. The estimation is based on the observation that critical pattern changes of intersection travel times or delays, such as the discontinuities (i.e., sudden and dramatic increases in travel times) and non-smoothness (i.e., changes of slopes of travel times), indicate signal timing or queue length changes. By detecting these critical points in intersection travel times or delays, the real time queue length can be re-constructed. We first introduce the concept of Queue Rear No-delay Arrival Time which is related to the non-smoothness of queuing delay patterns and queue length changes. We then show how measured intersection travel times from mobile sensors can be processed to generate sample vehicle queuing delays. Under the uniform arrival assumption, the queuing delays reduce linearly within a cycle. The delay pattern can be estimated by a linear fitting method using sample queuing delays. Queue Rear No-delay Arrival Time can then be obtained from the delay pattern, and be used to estimate the maximum and minimum queue lengths of a cycle, based on which the real-time queue length curve can also be constructed. The model and algorithm are tested in a field experiment and in simulation. |
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Keywords: | Mobile traffic sensors Traffic signals Traffic shockwave theory Real time queue length estimation Real time delay pattern estimation Real time arterial performance measurement |
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