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Dynamic Bandwidth Analysis for Coordinated Arterial Streets

机译:协调干道的动态带宽分析

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摘要

A commonly used strategy for improving mobility along signalized arterials is to coordinate neighboring intersections to minimize vehicle stops by maximizing the duration of green bands, otherwise known as arterial bandwidth. Signal coordination has been researched, developed, and refined for five decades. In lieu of traditional methods that are based on the analysis of programmed green times (which assume all phases operate at their maximum settings), a dynamic bandwidth analysis method is presented that reproduces actual dynamic bandwidth durations using closed loop signal data. The analysis is intended to help assess the performance of semi-actuated coordinated signal systems on arterial streets. In addition, the study highlights the arterial progression benefits that result from changing coordinated intersection offsets based on optimizing the dynamic, rather than the programmed, bandwidths. Detailed analysis at three arterial sites revealed that coordinated green phase time distributions are complex and multimodal and cannot be represented by a single-valued statistic. Dynamic bandwidth analysis confirmed that programmed green bandwidth consistently underestimates the size of the actual dynamic bandwidth, and exhaustive search results highlighted the potential for further improvements in coordination. Future research will include field and simulation comparative studies and the development of efficient methods for dynamic bandwidth optimization.
机译:一种用于提高沿信号干线移动性的常用策略是,通过最大化绿色频段的持续时间(也称为动脉带宽)来协调相邻的交叉路口,以最大程度地减少车辆的停车。信号协调已经研究,开发和完善了五十年。代替基于对编程的绿灯时间(假设所有阶段都在其最大设置下运行)进行分析的传统方法,提出了一种动态带宽分析方法,该方法使用闭环信号数据来再现实际的动态带宽持续时间。该分析旨在帮助评估动脉街道上的半致动协调信号系统的性能。此外,该研究还强调了基于优化动态带宽(而非编程带宽)而改变协调交叉口偏移量所带来的动脉进展优势。在三个动脉部位的详细分析显示,协调的绿相时间分布复杂且多峰,不能用单值统计来表示。动态带宽分析证实,编程的绿色带宽始终低估了实际动态带宽的大小,详尽的搜索结果突显了进一步改善协调的潜力。未来的研究将包括现场和仿真比较研究以及动态带宽优化的有效方法的开发。

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  • 来源
    《ITS Journal 》 |2016年第6期| 294-310| 共17页
  • 作者单位

    North Carolina State Univ, Dept Civil Construct & Environm Engn, Raleigh, NC USA;

    Washington State Univ, Dept Civil & Environm Engn, 405 Spokane St,Sloan Hall, Pullman, WA 99164 USA;

    North Carolina State Univ, Dept Civil Construct & Environm Engn, Raleigh, NC USA;

    North Carolina State Univ, Inst Transportat Res & Educ, Raleigh, NC USA;

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