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A splitting rate model of traffic re-routeing and traffic control

机译:交通重新路由和流量控制的分裂速率模型

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The paper presents an idealised dynamical model of day-to-day or within-day re-routeing using splitting rates at nodes, or nodeexit flows, rather than route-flows. It is shown that under certain conditions repeated application of the dynamical model gives rise to a sequence of link flow vectors which converges to a set of approximate Wardrop equilibria. A special dynamical signal green-time re-allocation model is added; the combination is shown (in outline) to converge to the set of approximate consistent equilibria under certain conditions. Finally the paper uses model network results to illustrate a method of designing fixed time signal timings to meet different scenarios. The paper sets the scene by giving a simple motivating model, involving both routeing changes and green-time changes following the equisaturation policy, in which unpredictable discontinuous behaviour, including a pitchfork bifurcation, occurs as a result of the interaction between re-routeing and responsive control.
机译:本文介绍了使用节点处的分割速率的日常生活的理想化动态模型,或者在日间内部重新路由,或者nodeexit流,而不是路由流。结果表明,在某些条件下,重复应用动态模型产生了一系列链路流向,该序列将收敛到一组近似的衣柜平衡。添加特殊的动态信号绿色时间重新分配模型;该组合被示出(在轮廓中),在某些条件下会聚到近似一致的均衡。最后,该论文使用模型网络结果来说明设计固定时间信号定时以满足不同场景的方法。本文通过提供简单的动机模型来设置场景,涉及均衡策略之后的路由变化和绿色时间变化,其中由于重新路由和响应之间的相互作用而发生了不可预测的不连续行为,包括干草叉分叉。控制。

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