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A methodology for calibrating microscopic simulation for modeling traffic flow under incidents

机译:校准微观模拟的方法,以对事件下的交通流进行建模

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Incidents cause significant delays and their impacts on traffic flow need to be modeled to evaluate and mitigate them. The objective of this paper is to provide a methodology for modeling incidents in microscopic traffic simulation environment. Queue lengths and shockwave propagation speeds resulting from incidents obtained from analytical kinematic wave theory (Lighthill - Witham - Richard or LWR) were used to calibrate incident model in microscopic traffic simulation (VISSIM). A two lane freeway along the HRBT corridor was taken as a test bed. Fundamental diagram corresponding to the corridor was developed using Van-Aerde traffic mode and was used as an input to LWR. Queue length as a result of incidents blocking only one lane and both lanes were analyzed. Reduction in capacity, as suggested in HCM, was considered in the process of incident model calibration. The results suggest that a well calibrated incident model in VISSIM is capable of reproducing the queue lengths and shockwaves obtained from LWR and thus can be used for understanding the impact of incidents on freeways and testing alternative traffic management strategies, e.g., minimize delay or emissions.
机译:突发事件会导致严重的延误,因此需要对突发事件对流量的影响进行建模,以评估和缓解突发事件。本文的目的是提供一种在微观交通仿真环境中对事件进行建模的方法。由分析运动波理论(Lighthill-Witham-Richard或LWR)获得的事件导致的队列长度和冲击波传播速度被用于在微观交通仿真(VISSIM)中校准事件模型。沿着HRBT走廊的两条车道高速公路被用作试验台。使用Van-Aerde交通模式开发了与走廊相对应的基础图,并将其用作LWR的输入。由于事件仅阻塞一个车道的队列长度,并且分析了两个车道。如事件响应模型中建议的那样,在事件模型校准过程中考虑了容量减少的问题。结果表明,VISSIM中经过良好校准的事件模型能够再现从LWR获得的队列长度和冲击波,因此可以用于了解事件对高速公路的影响并测试替代交通管理策略,例如最大程度地减少延迟或排放。

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