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A lane-based optimization method for minimizing delay at isolated signal-controlled junctions

机译:一种基于通道的优化方法,用于最小化隔离信号控制结的延迟

摘要

This paper presents a lane-based optimization method for minimizing delay at isolated signal-controlled junctions. The method integrates the design of lane markings and signal settings, and considers both traffic and pedestrian movements in a unified framework. While the capacity maximization and cycle length minimization problems are formulated as Binary-Mix-Integer-Linear-Programs (BMILPs) that are solvable by standard branch-and-bound routines, the problem of delay minimization is formulated as a Binary-Mix-Integer-Non-Linear Program (BMINLP). A cutting plane algorithm and a heuristic line search algorithm are proposed to solve this difficult BMINLP problem. The integer variables include the permitted movements on traffic lanes and successor functions to govern the order of signal displays, whereas the continuous variables include the assigned lane flows, common flow multiplier, cycle length, and starts and durations of green for traffic movements, lanes and pedestrian crossings. A set of constraints is set up to ensure the feasibility and safety of the resultant optimized lane markings and signal settings. A numerical example is given to demonstrate the effectiveness of the proposed methodology. The heuristic line search algorithm is more cost-effective in terms of both optimality of solution and computing time requirement.
机译:本文提出了一种基于通道的优化方法,可将隔离的信号控制路口处的延迟降至最低。该方法集成了车道标记和信号设置的设计,并在统一框架中同时考虑了交通和行人的运动。虽然将容量最大化和周期长度最小化问题表述为可通过标准分支定界例程解决的二进制混合整数线性程序(BMILP),但将延迟最小化的问题表述为Binary-Mix-Integer -非线性程序(BMINLP)。提出了一种切面算法和启发式线搜索算法来解决这一难题。整数变量包括允许在行车道上行驶的运动以及控制信号显示顺序的后继功能,而连续变量包括分配的车道流量,公共流量乘数,循环长度以及交通活动,车道和行车道的绿色开始和持续时间。人行横道。设置了一组约束,以确保最终优化的车道标记和信号设置的可行性和安全性。数值例子说明了所提方法的有效性。就解决方案的最优性和计算时间要求而言,启发式线搜索算法更具成本效益。

著录项

  • 作者

    Wong CK; Wong SC;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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