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Freeway Traffic Modeling and Control in a First-Order Hybrid Petri Net Framework

机译:一阶混合Petri网框架中的高速公路交通建模和控制

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摘要

The paper presents a model for freeway traffic performance evaluation and control in a First-Order Hybrid Petri Net (FOHPN) framework. Such a hybrid Petri net formalism includes continuous places holding fluid, discrete places containing a non-negative integer number of tokens and transitions, which are either discrete or continuous. In order to suitably describe the dynamics of the freeway traffic flow, we allow updating the transition firing speed as a function of the markings modeling the freeway traffic, as described by the stationary flow-density relationship. Moreover, we propose an online optimal control coordination of speed limits with the objective of maximizing the flow density. The use of FOHPNs offers several significant advantages with respect to the model existing in the related literature: the graphical feature enables an easy modular modeling approach and the mathematical aspects efficiently allow simulating and optimizing the system. The effectiveness of the FOHPN formalism is shown by applying the proposed modeling and control technique to a stretch of a freeway in the North-East of Italy, where a solution of an accident situation is considered.
机译:本文提出了一阶混合Petri网(FOHPN)框架中的高速公路交通绩效评估和控制模型。这样的混合Petri网形式主义包括保持流动的连续位置,包含非负整数数量的标记和过渡的离散位置,它们是离散的或连续的。为了适当地描述高速公路交通流量的动态变化,我们允许根据模拟高速公路交通流量的标记更新过渡点火速度,如静态流量-密度关系所述。此外,我们提出了速度限制的在线最优控制协调,目的是最大化流量密度。 FOHPNs的使用相对于相关文献中存在的模型提供了许多重要的优势:图形功能实现了简单的模块化建模方法,而数学方面则有效地实现了系统的仿真和优化。 FOHPN形式主义的有效性通过将拟议的建模和控制技术应用于意大利东北部的一段高速公路上而得到了证实,该高速公路在考虑了事故情况的解决方案。

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