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Traffic Inflow Control Problem on Urban Freeway Network for Disease Prevention

机译:疾病预防城市高速公路网络交通流入控制问题

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The outbreak of coronavirus disease 2019 (COVID-19) disrupted our regular life. Many local authorities enforced a cordon sanitaire to contain the rapid spread of the disease. Travelers can only pass the cordon after the disease screening. This paper aims to propose a method to design a traffic inflow control scheme for onramp metering to maximize urban freeway network throughput with an endurable queuing delay constraint at all offramps around cordon sanitaire. A bilevel programming model is formulated where the lower level is transportation system equilibrium to predict link traffic flows. The upper level is onramp metering optimization that is nonlinear programming. A stochastic queuing model is used to represent the waiting phenomenon at each offramp where the disease testing is conducted. A heuristic algorithm is designed to solve the proposed bilevel programming model where the method of successive averages (MSA) is adopted for the lower-level model, and a genetic algorithm (GA) with elite strategy is adopted for the upper-level model. An experimental study is conducted to demonstrate the effectiveness of the proposed method and algorithm. The results show that these methods can find a good heuristic optimal solution. These methods are useful for freeway operators to determine the optimal onramp control for disease control and prevention. They are also beneficial to set up checkpoints for all kinds of risks such as drunk driving and criminal searching.
机译:2019年冠状病毒疾病爆发(Covid-19)扰乱了我们的常规生活。许多地方当局强制遏制驯型卫生师,以遏制疾病的迅速传播。旅行者只能在疾病筛查后通过CIRTON。本文旨在提出一种设计onRAMP计量的交通流入控制方案的方法,以最大化城市高速公路网络吞吐量,并在Corcon Sanitaire周围的所有档案中持续排队延迟约束。配方较低级别是运输系统平衡以预测链路交通流量的制定均配有贝玻璃编程模型。上层是onlamp计量优化,即非线性编程。随机排队模型用于代表在进行疾病测试的每个档案中的等待现象。启发式算法旨在解决所提出的Bilevel编程模型,其中采用了较低级模型采用了连续平均值(MSA)的方法,对高级模型采用了具有精英策略的遗传算法(GA)。进行实验研究以证明所提出的方法和算法的有效性。结果表明,这些方法可以找到一个良好的启发式最佳解决方案。这些方法对于高速公路运营商可用于确定疾病控制和预防的最佳初始控制。他们也有利于为各种风险设置检查站,如醉酒驾驶和刑事搜索。

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