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首页> 外文期刊>Journal of advanced transportation >Modified Traffic Flow Model with Connected Vehicle Microscopic Data for Proactive Variable Speed Limit Control
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Modified Traffic Flow Model with Connected Vehicle Microscopic Data for Proactive Variable Speed Limit Control

机译:具有连接的车辆微观数据的修改的交通流量模型,用于主动变速极限控制

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Most previous prediction based Variable Speed Limit (VSL) control strategies focused on improving traffic mobility based on the macroscopic traffic data. Nowadays, the emerging technologies provide access to the microscopic traffic flow data, which better captures the details of traffic flow dynamics in the VSL controlled environment. Thus, in this paper, the microscopic traffic flow data were utilized as a supplement to predict the evolutions of traffic flow parameters. The proposed VSL control algorithm adopts the Model Predictive Control (MPC) framework, which employs a modified version of the classic traffic flow model METANET to take advantage of the microscopic data in traffic flow predictions. The microscopic traffic simulation software VISSIM was used to establish an experimental simulation platform and perform real time traffic responsive control based on field data. The proposed control strategy was evaluated against the no-VSL control and macroscopic-based VSL controlled scenario. The results show that utilizing the proposed modified METANET model reduced the error in speed prediction accuracy and improved system mobility performance.
机译:最先前的基于预测的可变速度限制(VSL)控制策略专注于基于宏观流量数据改进流量移动性。如今,新兴技术提供了对微观交通流量数据的访问,这更好地捕获了VSL控制环境中的业务流动态的细节。因此,在本文中,将微观交通流量数据用作补充以预测交通流量参数的演变。所提出的VSL控制算法采用模型预测控制(MPC)框架,其采用经典流量模型元类的修改版本来利用流量流预测中的微观数据。微观流量仿真软件Vissim用于建立实验模拟平台并基于现场数据执行实时交通响应控制。根据No-VSL控制和基于宏观的VSL控制方案评估所提出的控制策略。结果表明,利用所提出的修改的Metanet模型在速度预测精度下降误差和改进的系统移动性能。

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