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Freeway Control Via Ramp Metering: Development of a Basic Building Block for an On-Ramp, Discrete, Stochastic, Mesoscopic, Simulation Model within a Contextual Systems Approach

机译:通过斜坡测量的高速公路控制:在上下文系统方法中开发用于斜坡,离散,随机,介观,仿真模型的基本构建块

摘要

One of the most effective measures of congestion control on freeways has been ramp metering, where vehicle entry to the freeway is regulated by traffic signals (meters). Meters are run with calibrated influx rates to prevent highway saturation. However, recent observations of some metering sites in San Diego, CA indicate that metering, during peak hour demand, is helping freeway flow while sometimes creating considerable traffic back-ups on local streets, transferring congestion problems from the freeway to intersections. Metering problems stem largely from the difficulty of designing an integrated, dynamic metering scheme that responds not only to changing freeway conditions but also to fluctuating demand throughout the ramp network; a scheme whose objective is to maintain adequate freeway throughput as well as minimize disproportionate ramp delays and queue overspills onto surface streets. Simulation modeling is a versatile, convenient, relatively inexpensive and safe systems analysis tool for evaluating alternative strategies to achieve the above objective. The objective of this research was to establish a basic building block for a discrete system simulation model, ONRAMP, based on a stochastic, mesoscopic, queueing approach. ONRAMP is for modeling entrance ramp geometry, vehicular generation, platooning and arrivals, queueing activities, meters and metering rates. The architecture of ONRAMPu27s molecular unit is designed in a fashion so that it can be, with some model calibration, duplicated for a number of ramps and, if necessary, integrated into some other larger freeway network models. SLAM.II simulation language is used for computer implementation. ONRAMP has been developed and partly validated using data from eight ramps at Interstate-B in San Diego. From a systems perspective, simulation will be short-sided and problem analysis is incomplete unless the other non-technical metering problems are explored and considered. These problems include the impacts of signalizing entrance ramps on the vitality of adjacent intersections, land use and development, u22fairu22 geographic distribution of meters and metering rates throughout the freeway corridor, public acceptance and enforcement, and the role and influence of organizations in charge of decision making in this regard. Therefore, an outline of a contextual systems approach for problem analysis is suggested. Benefits and problems of freeway control via ramp metering, both operational short-term and strategic long-term, are discussed in two dimensions: global (freeway) and local (intersection). The results of a pilot study which includes interviews with field experts and law enforcement officials and a small motorist survey are presented.
机译:高速公路上最有效的交通拥堵控制措施之一是匝道计费,其中车辆进入高速公路的交通信号由交通信号灯(仪表)调节。仪表按校准的进水速度运行,以防止高速公路饱和。但是,最近对加利福尼亚圣地亚哥的一些计量站点的观察表明,在高峰时段需求期间,计量在帮助高速公路畅通的同时,有时会在当地街道上形成大量的交通拥堵,将拥堵问题从高速公路转移到交叉路口。计量问题主要源于设计集成的动态计量方案的困难,该方案不仅应对不断变化的高速公路状况,而且还应对整个匝道网络的需求波动。该计划的目的是保持足够的高速公路通行量,并最大程度地减少不成比例的匝道延误,并将溢出的事故排到地面街道上。仿真建模是一种通用,方便,相对便宜且安全的系统分析工具,用于评估实现上述目标的替代策略。这项研究的目的是为基于随机,介观,排队方法的离散系统仿真模型ONRAMP建立基本的构建块。 ONRAMP用于建模入口坡道的几何形状,车辆的产生,排和到达,排队活动,仪表和计量率。 ONRAMP分子单元的架构采用某种方式设计,因此可以通过一些模型校准将其复制为多个坡道,并在必要时集成到其他较​​大的高速公路网络模型中。 SLAM.II仿真语言用于计算机实现。 ONRAMP已使用圣地亚哥州际B州的八个坡道的数据进行了开发和部分验证。从系统的角度来看,除非探讨和考虑其他非技术计量问题,否则仿真将是短边的,并且问题分析将是不完整的。这些问题包括信号入口坡道对相邻交叉路口的生命力,土地利用和发展,高速公路走廊的仪表和计量费率的地理分布,公众的接受和执法以及组织在高速公路中的作用和影响等方面的影响。负责这方面的决策。因此,提出了用于问题分析的上下文系统方法的概述。短期内和战略上长期通过匝道计量控制高速公路的好处和问题,在两个方面进行了讨论:全局(高速公路)和局部(交叉口)。介绍了一项试点研究的结果,其中包括对现场专家和执法人员的采访以及一次小型驾车者调查。

著录项

  • 作者

    Alkadri Mohamed Yaser;

  • 作者单位
  • 年度 1991
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  • 原文格式 PDF
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