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Optimizing urban traffic control using a rational agent

机译:使用理性主体优化城市交通控制

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This paper is devoted to developing and evaluating a set of technologies with the objective of designing a methodology for the implementation of sophisticated traffic lights by means of rational agents. These devices would be capable of optimizing the behavior of a junction with multiple traffic signals, reaching a higher level of autonomy without losing reliability, accuracy, or efficiency in the offered services. In particular, each rational agent in a traffic signal will be able to analyze the requirements and constraints of the road, in order to know its level of demand. With such information, the rational agent will adapt its light cycles with the view of accomplishing more fluid traffic patterns and minimizing the pollutant environmental emissions produced by vehicles while they are stopped at a red light, through using a case-based reasoning (CBR) adaptation. This paper also integrates a microscopic simulator developed to run a set of tests in order to compare the presented methodology with traditional traffic control methods. Two study cases are shown to demonstrate the efficiency of the introduced approach, increasing vehicular mobility and reducing harmful activity for the environment. For instance, in the first scenario, taking into account the studied traffic volumes, our approach increases mobility by 23% and reduces emissions by 35%. When the roads are managed by sophisticated traffic lights, a better level of service and considerable environmental benefits are achieved, demonstrating the utility of the presented approach.
机译:本文致力于开发和评估一组技术,目的是设计一种通过理性主体实施复杂交通信号灯的方法。这些设备将能够优化具有多个交通信号的路口的行为,达到更高的自治级别,而不会损失所提供服务的可靠性,准确性或效率。特别是,交通信号中的每个理性主体都将能够分析道路的需求和约束,以便了解其需求水平。借助此类信息,理性主体将通过基于案例的推理(CBR)进行调整,以实现更多的交通模式并最大程度地减少车辆在红灯处停车时产生的污染物环境排放, 。本文还集成了开发用于运行一组测试的微观模拟器,以便将所提供的方法与传统的交通控制方法进行比较。显示了两个研究案例,以证明引入的方法的有效性,增加了车辆的机动性并减少了对环境的有害活动。例如,在第一种情况下,考虑到研究的交通量,我们的方法将移动性提高了23%,并将排放量减少了35%。通过复杂的交通信号灯管理道路时,可以实现更高的服务水平和可观的环境效益,从而证明了所提出方法的实用性。

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