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Model based urban traffic control, part Ⅰ: Local model and local model predictive controllers

机译:基于模型的城市交通控制,第一部分:局部模型和局部模型预测控制器

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This paper is the first in a series of reports presenting a framework for the hierarchical design of feedback controllers for traffic lights in urban networks. The goal of the research is to develop an easy to understand methodology for designing model based feedback controllers that use the current state estimate in order to select the next switching times of traffic lights. In this paper we introduce an extension of the cell transmission model that describes with sufficient accuracy the major causes of delay for urban traffic. We show that this model is computationally fast enough such that it can be used in a model predictive controller that decides for each intersection, taking into account the vehicle density as estimated along all links connected to the intersection, what switching time minimizes the local delay for all vehicles over a prediction horizon of a few minutes. The implementation of this local MPC only requires local online measurements and local model information (unlike the coordinated MPC, to be introduced in the next paper in this series, that takes into account interactions between neighbouring intersections). We study the performance of the proposed local MPC via simulation on a simple 4 by 4 Manhattan grid, comparing its delay with an efficiently tuned pretimed control for the traffic lights, and with traffic lights controlled according to the max pressure rule. These simulations show that the proposed local MPC controller achieves a significant reduction in delay for various traffic conditions.
机译:本文是一系列报告中的第一篇,该报告提出了用于城市网络中交通信号灯反馈控制器的分层设计的框架。该研究的目的是开发一种易于理解的方法,用于设计基于模型的反馈控制器,该控制器使用当前状态估计值来选择交通信号灯的下一个切换时间。在本文中,我们介绍了小区传输模型的扩展,该扩展以足够的精度描述了城市交通延误的主要原因。我们证明了该模型的计算速度足够快,因此可以在确定每个路口的模型预测控制器中使用该模型,同时考虑到沿连接至路口的所有链路估算的车辆密度,切换时间可将所有车辆在几分钟的预测范围内。此本地MPC的实现仅需要本地在线测量和本地模型信息(与本系列的下一篇文章中要介绍的协调MPC不同,它考虑了相邻交叉点之间的交互作用)。我们通过在一个简单的4 x 4曼哈顿网格上进行仿真来研究拟议的本地MPC的性能,将其延迟与交通信号灯的有效调整的预定时控制以及根据最大压力规则进行控制的交通灯进行比较。这些仿真表明,针对各种交通状况,建议的本地MPC控制器可显着减少延迟。

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