交通运输系统工程与信息 ›› 2016, Vol. 16 ›› Issue (6): 74-80.

• 智能交通系统与信息技术 • 上一篇    下一篇

基于燃油消耗与交通效率的区域交通控制模型

张卫华,陈森,丁恒*   

  1. 合肥工业大学汽车与交通工程学院,合肥230009
  • 收稿日期:2016-03-18 修回日期:2016-09-12 出版日期:2016-12-25 发布日期:2016-12-26
  • 作者简介:张卫华(1967-),男,安徽宿松人,教授.
  • 基金资助:

    国家自然科学基金资助/National Natural Science Foundation of China(51178158,51578207,61304195);安徽省 自然科学基金/ National Natural Science Foundation of Anhui Province(1408085QF111).

The Traffic Control Model Based on Efficiency and Fuel Consumption of the Road Network

ZHANGWei-hua, CHEN Sen, DING Heng   

  1. School of Automobile and Traffic Engineering, Hefei University of Technology, Hefei 230009, China
  • Received:2016-03-18 Revised:2016-09-12 Online:2016-12-25 Published:2016-12-26

摘要:

为了降低交通运输系统能源消耗,同时满足居民的出行需求,需综合考虑机动 车燃油消耗和道路通行效率.针对此问题,引入交通网络车均燃油消耗和宏观基本图 (Macroscopic Fundamental Diagram,MFD),建立了车辆完成率高、车均燃油消耗低的双目 标规划模型,并对模型进行求解.依据反馈原理和车流平衡方程提出了燃油消耗比例积分 控制(Fuel Consumption-Proportional Integral,FC-PI)控制方法,并通过FC-PI 控制方法降 低区域内车均燃油消耗,提高路网车辆完成率.最后通过实际城市路网验证所提出的燃油 消耗控制模型,并且与Bang-Bang 控制方法进行了比较.仿真结果显示,网络内车均燃油 消耗显著降低,同时网络内车辆完成率得到提高,且FC-PI 控制方法的控制效果要优于 Bang-Bang控制方法.

关键词: 城市交通, 车辆完成率, 双目标规划模型, 燃油消耗, 宏观基本图

Abstract:

In order to reduce energy consumption of the transportation system and meet the trip demand of the residents as possible. It is necessary to consider improving traffic efficiency under the condition of reducing vehicle fuel consumption. For the question, the average fuel consumption of the vehicles and macroscopic fundamental diagram (MFD) are introduced to establish the double- objective programming model, which makes the trip completion flow high but the average fuel consumption low, and the model is solved. Fuel consumption-proportional integral (FC-PI) control method is proposed based on the feedback principle and the equilibrium equations of the traffic flow, reducing the average fuel consumption of the vehicles in the region through the FC-PI control method, and improving the trip completion flow. Finally, the fuel consumption control model is verified by the actual urban road network as a case study, which is compared with the control method of Bang-Bang. The result shows that the trip completion flow is improved and the average fuel consumption of the vehicles is reduced significantly. And the control effect of FC-PI is better than Bang-Bang.

Key words: urban traffic, trip completion flow, double-objective programming model, fuel consumption, macroscopic fundamental diagram;

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