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Distributed travel time savings of a multiscale transportation access management program

机译:多级交通访问管理程序的分布式旅行时间节省

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摘要

Access management in transportation planning can save travel time, reduce crashes, and increase route capacities. The planning literature suggests a need for performance metrics and a decision-aiding framework to guide access management programs across large corridor networks and diverse time horizons. This paper describes a quantitative framework to support access management programs, applying multicriteria analysis and cost-benefit analysis with parameter uncertainties. The metrics used to assess relative priorities at existing access points include the following: travel time delay index, traffic exposure, value of time, and costs of typical access management activities. Uncertain parameters that influence the estimates of the potential benefits and costs are identified and treated via a numerical interval analysis. The framework is demonstrated at several geographic scales and locations including 7,000 km of highway arterials of a 110,000 square-kilometer region and several sub-regions. The results assist decision makers to identify route segments that should be addressed sooner by eliciting additional information, reserving right-of-way, closing access points, planning new alignments, facilitating development proffers, etc. The approach is transferable to other topics involving resource allocation for preservation and improvement of multiscale infrastructure systems.
机译:运输计划中的访问管理可以节省旅行时间,减少事故并增加路线通行能力。规划文献建议需要性能指标和决策辅助框架,以指导跨大型走廊网络和不同时间范围的访问管理程序。本文描述了一个定量的框架来支持访问管理程序,应用带有参数不确定性的多准则分析和成本效益分析。用于评估现有访问点的相对优先级的度量标准包括:旅行时间延迟指数,交通风险,时间价值和典型访问管理活动的成本。通过数值间隔分析确定并处理影响潜在收益和成本估算的不确定参数。该框架在几个地理尺度和位置得到了展示,包括110,000平方公里区域和几个子区域的7,000公里高速公路干线。结果可帮助决策者通过获取更多信息,预留通行权,关闭接入点,规划新路线,促进开发人员等来识别应尽快解决的路线段。该方法可转移到涉及资源分配的其他主题用于维护和改善多尺度基础设施系统。

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