Introducing Offsets to the Virtual Phase-link Street Traffic Model for Arterial Traffic Control

Qichao Wang, M. Abbas
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Abstract

In our previous work, we proposed a Virtual Phase-Link street traffic model to provide optimal control of green splits. The simulations implemented the offsets which were obtained from Vistro offline. Offsets can significantly impact the performance of arterial traffic controls. This paper introduces offsets as optimization variables to the Virtual Phase-Link street traffic model. Based on the optimization results from the optimal green splits control proposed in the previous work, we derived the delay function for offsets optimization. The proposed offsets optimization were tested under two scenarios of the same arterial against their base cases in simulations. It was found that in both scenarios, the proposed method resulted in significantly less delay compared to the base cases. It was also found that the proposed offsets optimization method can identify the dominant traffic path and provide progression optimization for it.
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将偏移引入到虚拟相链街道交通模型中,用于干线交通控制
在我们之前的工作中,我们提出了一个虚拟相链街道交通模型,以提供最优的绿色分裂控制。仿真实现了从Vistro离线获取的偏移量。偏移量会显著影响干线交通控制的性能。将偏移量作为优化变量引入到虚拟相链街道交通模型中。在前人提出的最优绿裂控制优化结果的基础上,导出了用于偏移量优化的延迟函数。在同一条动脉的两种情况下对所提出的偏移量优化进行了模拟测试。研究发现,在这两种情况下,与基本情况相比,所提出的方法导致的延迟明显减少。结果表明,所提出的偏移量优化方法能够识别出优势交通路径并对其进行级数优化。
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