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Dynamic traffic control: decentralized and coordinated methods

机译:动态交通控制:分散和协调的方法

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ALLONS-D is a decentralized real-time traffic control scheme. Through simulations, the scheme is shown to be suitable for adaptive control of an isolated intersection. An efficient tree searching algorithm, constrained only by a maximum and minimum green time per phase, is used to find a traffic signal plan that minimizes delay. Differences between ALLONS-D and other real-time traffic control schemes, such as OPAC, are described. The scheme can also be used to reduce travel times on transit routes. For arterial networks of intersections, ALLONS-D is capable of inducing a level of coordination that results in progressive signal plans. An extension of the scheme to provide network-wide optimization of traffic signals is explained in the form of a two-layer scheme. Simulation experiments are performed with a newly developed simulator called STNS.
机译:ALLONS-D是一种分散的实时流量控制方案。通过仿真显示,该方案适用于孤立路口的自适应控制。一种有效的树搜索算法,仅受每个阶段的最大和最小绿灯时间约束,可用于查找可将延迟最小化的交通信号计划。描述了ALLONS-D与其他实时流量控制方案(如OPAC)之间的差异。该方案还可用于减少过境路线上的旅行时间。对于交叉路口的动脉网络,ALLONS-D能够产生一定程度的协调,从而制定出渐进的信号计划。以两层方案的形式解释了该方案的扩展,以提供网络范围内的交通信号优化。仿真实验是使用称为STNS的新开发的仿真器进行的。

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