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Applying a Network Programming Algorithm to a Networkwide Traffic Control Scheme: Simulation-Based Performance Studies

机译:将网络编程算法应用于全网流量控制方案:基于仿真的性能研究

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摘要

A complete optimal formulation of a network traffic control scheme in the form of arc flows in a time-expanded network is presented. The platoon dispersion model used in the proposed optimal control formulation forms linear constraints. The integer-linear network programming formulation is solved by using a modified network simplex and branch-and-bound scheme. The formulation does not assume fixed cycle lengths or phase sequences. It assumes full information on external inputs, but it can be incorporated into a sensor-based environment, as well as into a feedback control framework. The integer-linear program formulation may not be efficiently solved by standard simplex and branch-and-bound techniques. Network programming formulations that can be used to handle the linear equations and the integer constraints at the intersections are discussed. A special-purpose network simplex algorithm for fast solution is also mentioned. The optimization model takes the form of mixed integer-linear programming. The control strategies generated by these optimization models were compared with those derived from conventional signal timing models by using the TRAF-NETSIM microscopic simulation model. The proposed optimization models consistently outperformed the conventional signal control methods with respect to the system delay objective. It was found that the optimization models successfully produced optimal signal timing plans for the various signalized intersections, including simulated and real-world networks.
机译:提出了在时间扩展网络中以弧流形式出现的网络流量控制方案的完整最佳公式。提出的最优控制公式中使用的排扩散模型形成线性约束。通过使用改进的网络单纯形和分支定界方案来求解整数线性网络编程公式。该配方不假定固定的循环长度或相序。它假定了有关外部输入的完整信息,但可以将其合并到基于传感器的环境以及反馈控制框架中。整数线性程序的公式可能无法通过标准的单纯形法和分支定界技术有效地解决。讨论了可用于处理线性方程和交点处的整数约束的网络编程公式。还提到了一种用于快速求解的专用网络单纯形算法。优化模型采用混合整数线性规划的形式。通过使用TRAF-NETSIM微观仿真模型,将这些优化模型生成的控制策略与从常规信号时序模型得出的控制策略进行了比较。就系统延迟目标而言,所提出的优化模型始终优于传统的信号控制方法。结果发现,优化模型成功地为各种信号交叉口(包括模拟和现实网络)生成了最佳信号时序计划。

著录项

  • 来源
    《Transportation Research Record》 |2004年第1882期|p.105-112|共8页
  • 作者

    Wann-Ming Wey; R. Jayakrishnan;

  • 作者单位

    Graduate School of Architecture and Urban Design and Department of Architecture, Chaoyang University of Technology, 168 Gifeng East Road, Wufeng, Taichung County, Taiwan, 413, Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 交通运输;
  • 关键词

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