School of Electronic and Information Engineering, Anhui Jianzhu University, Hefei, China.
Intelligent Interconnected Systems Laboratory of Anhui Province, Hefei University of Technology, Hefei, China.
PLoS One. 2024 Mar 15;19(3):e0298417. doi: 10.1371/journal.pone.0298417. eCollection 2024.
Urbanization has led to accelerated traffic congestion, posing a significant obstacle to urban development. Traditional traffic signal scheduling methods are often inefficient and cumbersome, resulting in unnecessary waiting times for vehicles and pedestrians, exacerbating the traffic situation. To address this issue, this article proposes a dynamic traffic signal scheduling system based on an improved greedy algorithm. Unlike conventional approaches, we introduce a reward function and a cost model to ensure fair scheduling plans. A constraint function is also established, and the traffic signal scheduling is iterated through the feasible matrix using the greedy algorithm to simplify the decision-making process and enhance solution efficiency. Moreover, an emergency module is integrated to prioritize special emergency vehicles, reducing their response time during emergencies. To validate the effectiveness of our dynamic traffic signal scheduling system, we conducted simulation experiments using the Simulation of Urban Mobility (SUMO) traffic simulation suite and the SUMO traffic control interface Traci. The results indicate that our system significantly improves intersection throughput and adapts well to various traffic conditions, effectively resolving urban traffic congestion while ensuring fair scheduling plans.
城市化导致交通拥堵加速,对城市发展构成重大障碍。传统的交通信号调度方法往往效率低下且繁琐,导致车辆和行人不必要的等待时间,使交通状况恶化。针对这一问题,本文提出了一种基于改进的贪婪算法的动态交通信号调度系统。与传统方法不同,我们引入了奖励函数和成本模型,以确保公平的调度计划。还建立了约束函数,并通过贪婪算法在可行矩阵中迭代交通信号调度,以简化决策过程并提高解决方案的效率。此外,还集成了紧急模块,优先考虑特殊紧急车辆,减少紧急情况下的响应时间。为了验证我们的动态交通信号调度系统的有效性,我们使用 Simulation of Urban Mobility(SUMO)交通模拟套件和 SUMO 交通控制接口 Traci 进行了仿真实验。结果表明,我们的系统显著提高了交叉口的吞吐量,并能很好地适应各种交通状况,有效解决了城市交通拥堵问题,同时确保了公平的调度计划。