SVM based intelligent traffic control and simulation for urban expressway and periphery freeway

C. Feng, J. Yuanhua, Li Jian, Ao Guchang
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引用次数: 1

Abstract

Urban periphery road network is a special type of roadwork pattern that scatters and distributes around the specific zone of metropolitan and in that contains different grade and functional roads of arterial road, urban freeway and expressway. Urban traffic flow and inter-cities flow transform and divert intensively and massively in this zone, also bring traffic jams and incidents frequently. Traffic control is necessary. Coordinated traffic control is a new development where the control problem is to find the combination of control measures that result in the best road performance. The problems of multi-objective coordinated metering and evaluation for local ramp is considered. This paper discusses the optimal coordination of mainline and ramp, a modified ramp latency model is posed using the method of queuing theory, and a ramp control with better mechanism compare to artifical neural network using radical based function-support vector machine algorithm is designed. With in-situ traffic flow data of high-density period, three known and the novel methodologies are compared, and the preliminary simulation-based investigation of the local ramp coordinated metering for urban expressway and related periphery freeway using these methodologies demonstrates the comparative control efficiency and accuracy, especially in the improvement of certain objective.
基于支持向量机的城市快速路及外围快速路智能交通控制与仿真
城市外围路网是围绕城市特定区域分散分布的一种特殊类型的道路工程格局,其中包含主干道、城市快速路、高速公路等不同等级和功能的道路。城市交通流和城际交通流在该区集中、大规模地转换和分流,也频繁地引发交通堵塞和事故。交通管制是必要的。协调交通控制是一种新的发展方向,其控制问题是寻找使道路性能达到最佳的控制措施组合。研究了局部匝道的多目标协调计量与评价问题。讨论了干线与匝道的最优协调问题,利用排队论的方法建立了改进的匝道延迟模型,并采用基于径向的函数-支持向量机算法设计了一种机制优于人工神经网络的匝道控制。利用高密度时段的现场交通流数据,对三种已知方法和新方法进行了比较,并对城市快速路与周边快速路局部匝道协调计量进行了初步仿真研究,结果表明,这些方法具有比较好的控制效率和准确性,特别是在某些目标的改善方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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