首页> 外文会议>Intelligent Transportation Systems, 2002. Proceedings. The IEEE 5th International Conference on >A real-time local signal control methodology for alleviating incident-induced traffic congestion on arterials
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A real-time local signal control methodology for alleviating incident-induced traffic congestion on arterials

机译:一种实时的本地信号控制方法,可减轻突发事件引起的交通拥堵

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This paper presents a real-time local signal control method which serves to alleviate incident-induced traffic congestion on the roadway between two adjacent intersections. The proposed approach includes two major parts: (1) a discrete-time non-linear stochastic model which denotes the time-varying relationships of lane traffic state variables and control variables under conditions of lane-blocking incidents, and (2) a real-time control algorithm for dynamically predicting control variables. To generate efficiently traffic data used in model tests, we employed the Paramics microscopic traffic simulator, which is developed to model and analyze ITS traffic flow conditions. The preliminary test results indicate the superiority of the proposed real-time signal control method in comparison with fixed-time signal control modes which are presently used at the study site. It is expected that this study can stimulate research on incident management, and extend to network-wide incident responsive traffic control for the development of advanced traffic management systems (ATMS).
机译:本文提出了一种实时的本地信号控制方法,该方法可缓解两个相邻交叉口之间的道路上因事故引起的交通拥堵。拟议的方法包括两个主要部分:(1)离散时间非线性随机模型,该模型表示车道阻塞事件条件下车道交通状态变量和控制变量的时变关系,以及(2)实数模型动态预测控制变量的时间控制算法。为了有效地生成用于模型测试的交通数据,我们采用了Paramics微观交通模拟器,该模拟器旨在对ITS交通流状况进行建模和分析。初步测试结果表明,与目前在研究现场使用的固定时间信号控制模式相比,提出的实时信号控制方法具有优越性。可以预期,这项研究可以促进对事件管理的研究,并扩展到网络范围内的事件响应流量控制,以开发高级流量管理系统(ATMS)。

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