基于单路口车流量统计的交通灯配时系统研究
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1.西安科技大学通信与信息工程学院 西安 710054; 2.西安地山视聚科技有限公司 西安 712044

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U491

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国家自然科学基金青年基金项目(51804248)、陕西省科技厅工业攻关(2022GY-115)、西安市碑林区应用技术研发项目(GX2114)、陕西省教育厅服务地方企业(22JC050)项目资助


Research on traffic light timing system based on traffic flow statistics at single intersection
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1.School of Communication and Information Engineering, Xi′an University of Science and Technology,Xi′an 710054, China; 2.Xi′an Dishan Vision Technology Limited Company,Xi′an 712044, China

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    摘要:

    随着机动车数量的持续增加城市交通拥堵问题日愈明显,为了缓解交通拥堵,本文设计了一种智能交通系统。在车辆检测部分:利用背景均值建模解决ViBe背景建模产生鬼影的问题,针对不同复杂程度的背景赋予不同的背景更新速率来实现自适应背景更新策略。交通灯配时部分:针对单级模糊控制以排队长度作为模糊控制输入误差较大的问题,构建了基于拥堵强度的两级模糊控制器,经过模糊推理和清晰化后得出配时方案,从而对绿灯时间做出调整。实验结果表明,在车流量检测部分:通过不同类型的交通场景测试,改进的ViBe算法在车辆流量的综合准确率相比ViBe算法提升了11%,能够为配时策略提供准确的数据支撑。红绿灯配时部分:本文提出的基于两级模糊控制的信号灯配时策略在3种流量场景下与现有交通灯配时方法相比,车辆平均延误时间和车辆平均通行时间分别降低了3.34和5.65 s以上,能够起到缓解交通拥堵的作用。

    Abstract:

    As the number of motor vehicles continues to increase the problem of traffic congestion in cities becomes more and more apparent, an intelligent traffic system is designed in this paper to alleviate traffic congestion. In the vehicle detection section: The problem of ghosting from ViBe background modelling is solved using background mean modelling, and the adaptive background update strategy is implemented by assigning different background update rates to backgrounds of different complexity. Traffic light timing section: To address the problem of single-stage fuzzy control with queue length as the fuzzy control input error, a two-stage fuzzy controller based on congestion intensity is constructed, and the timing scheme is derived after fuzzy inference and clarification, so as to make adjustments to the green light time. The experimental results show that in the traffic flow detection part: Through the testing of different types of traffic scenarios, the comprehensive accuracy of the improved ViBe algorithm in vehicle flow is improved by 11% compared to the ViBe algorithm, which can provide accurate data support for the timing strategy. In the traffic light timing part: Compared with the existing traffic light timing methods, the signal light timing strategy based on two-level fuzzy control proposed in this paper reduces the average vehicle delay time and the average vehicle travel time by more than 3.34 and 5.65 s respectively under three traffic scenarios, which can play a role in easing traffic congestion.

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赵谦,马文越,郑超,邓宇豪.基于单路口车流量统计的交通灯配时系统研究[J].电子测量技术,2023,46(8):82-91

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  • 在线发布日期: 2024-02-07
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