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A model and genetic algorithm for area-wide intersection signal optimization under user equilibrium traffic

机译:用户均衡交通下广域交叉口信号优化的模型和遗传算法

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The use of signal control systems to reduce traffic movement conflicts at intersections often affects operational efficiency of an urban street network. This study introduces a new method for area-wide traffic signal timing optimization under user equilibrium traffic. The optimization model is formulated as a multi-dimensional search problem aimed to achieve minimized product of the total travel time associated with urban street network and the variance of travel time for unit distance of travel. A genetic algorithm is developed to derive the model solution. A simulation control protocol embedded in PARAMICS software tool capable of conducting area-wide microsimulation is adopted to design the logic frame and function module of the area-wide traffic signal control system. Computational experiment is performed for model application on the Central Business District of Nanjing, China for validation. The results show that mobility improvements are achieved after applying the proposed model along with the genetic algorithm for area-wide signal timing optimization, assessed by extended capacity ratio, and reductions in through and turning movement delays, as well as average and variance of travel time for unit distance of travel. (C) 2017 International Association for Mathematics and Computers in Simulation (IMACS). Published by Elsevier B.V. All rights reserved.
机译:使用信号控制系统来减少交叉路口的交通运动冲突通常会影响城市街道网络的运营效率。本研究介绍了一种在用户均衡流量下优化区域交通信号定时的新方法。优化模型被公式化为多维搜索问题,旨在实现与城市街道网络相关的总旅行时间与旅行时间随单位行驶距离的变化的最小乘积。开发了遗传算法以导出模型解。采用嵌入在能够进行区域微仿真的PARAMICS软件工具中的模拟控制协议来设计区域交通信号控制系统的逻辑框架和功能模块。在中国南京中央商务区进行模型应用的计算实验以进行验证。结果表明,通过将提出的模型与遗传算法一起用于区域信号定时优化,通过扩大的容量比,通过直通和转弯运动延迟的减少以及行进时间的平均值和方差的评估,可以实现移动性的改善。用于单位旅行距离。 (C)2017年国际数学与模拟计算机协会(IMACS)。由Elsevier B.V.发布。保留所有权利。

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