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Developing a De-centralized Cycle-free Nash Bargaining Arterial Traffic Signal Controller

机译:开发一种非集中式无循环纳什议中动脉交通信号控制器

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This paper presents a novel de-centralized cycle-free traffic signal controller that adapts to changes in traffic demand. Traffic signal timing optimization is achieved using a Nash Bargaining game-theoretic framework, where each phase is modeled as a player in a game in which the players cooperate to reach a mutual agreement. The Nash bargaining solution is applied to obtain the optimal control strategy, considering a flexible phasing sequence and free cycle length. The system is implemented and evaluated in the INTEGRATION microscopic traffic assignment and simulation software. The proposed control approach is compared to the operation of an optimum fixed-time coordinated plan, a centralized adaptive phase split controller, a decentralized phase split and cycle length controller, and a fully coordinated adaptive phase split, cycle length, and offset optimization controller to evaluate the performance of the proposed decentralized controller. The simulation results were tested on an arterial network located in the heart of downtown Blacksburg, Virginia, USA. The simulation results show significant reductions in the average travel time ranging from 7% to 21%, a reduction in the total delay ranging from 36% to 67%, and a reduction in the emission levels ranging from 6% to 13%. Analysis of variance, Tukey, and pairwise comparison tests were conducted, to examine the statistically significant difference of the proposed controller. The results demonstrate that the proposed decentralized controller produces major improvements over other state-of-the-art centralized and de-centralized control approaches.
机译:本文介绍了一种新型的非集中式无循环流量信号控制器,适应流量需求的变化。使用NASH讨价还价的游戏理论框架实现交通信号定时优化,其中每个阶段被建模为参与者在游戏中的播放器中建模,其中玩家协作达到相互协议。纳什议程解决方案用于获得最佳控制策略,考虑灵活的相位序列和自由循环长度。在集成微观流量分配和仿真软件中实现和评估系统。将所提出的控制方法与最佳定时协调计划,集中式自适应相分机控制器,分散的相位分割和循环长度控制器的操作进行比较,以及完全协调的自适应相位分割,循环长度和偏移优化控制器评估所提出的分散控制器的性能。在美国弗吉尼亚州弗吉尼亚州街市中心的动脉网络上测试了仿真结果。仿真结果显示出平均旅行时间的显着降低,范围为7%至21%,总延迟的减少范围从36%到67%,排放水平的减少范围为6%至13%。进行了方差,Tukey和成对比较测试的分析,以检查所提出的控制器的统计显着差异。结果表明,拟议的分散控制器对其他最先进的集中和去集中控制方法产生了重大改进。

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