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首页> 外文期刊>Journal of Construction Engineering and Management >Optimal Trade-Offs between Construction Cost and Traffic Delay for Highway Work Zones
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Optimal Trade-Offs between Construction Cost and Traffic Delay for Highway Work Zones

机译:高速公路工作区的建设成本与交通延误之间的最佳平衡

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摘要

Highway work zones often cause traffic congestion, resulting in increased road-user delays and vehicle emissions. These negative impacts of highway work zones can be minimized by a number of mitigating measures such as reducing the length of work zone segments, using the shoulder temporarily for traffic, and working during low-traffic nighttime hours. These work zone layout measures, however, cause an increase in highway construction cost. Accordingly, these tradeoffs between reducing work zone delays and minimizing construction cost need to be analyzed to establish an optimal balance between these two critical and conflicting objectives. This paper presents the development of a novel multiobjective optimization model for highway work zone layouts that is capable of generating optimal tradeoffs between minimizing traffic delays and construction cost. The model was developed in three main phases: formulation, implementation, and performance evaluation. First, the model was formulated to (1)identify all relevant work zone decision variables that affect mobility and cost, (2)model the two objective functions of minimizing work zone delay and construction cost, and (3)represent all practical constraints. Second, the model was implemented using a genetic algorithm to perform the multiobjective optimization computations and enable generating optimal tradeoffs among the two objectives in a single run. Third, the performance of the model was evaluated using an application example of a highway work zone. The results of the performance evaluation phase illustrate the novel and unique capabilities of the model in optimizing work zone layout parameters and generating optimal tradeoffs between minimizing traffic delays and construction cost.
机译:高速公路工作区经常造成交通拥堵,导致道路使用者延误和车辆排放增加。可以通过多种缓解措施来最大程度地减少高速公路工作区的负面影响,例如减少工作区的长度,临时使用路肩进行通行以及在夜间低通行时间工作。然而,这些工作区布置措施导致高速公路建设成本增加。因此,需要在减少工作区延迟和最小化建筑成本之间进行权衡,以在这两个关键且相互冲突的目标之间建立最佳平衡。本文提出了一种新的公路目标工作区布局多目标优化模型,该模型能够在最小化交通延误和建筑成本之间产生最佳折衷。该模型在三个主要阶段开发:制定,实施和绩效评估。首先,该模型的制定是为了(1)识别影响流动性和成本的所有相关工作区决策变量,(2)对最小化工作区延迟和建筑成本的两个目标函数进行建模,以及(3)代表所有实际约束。其次,该模型是使用遗传算法实现的,以执行多目标优化计算,并能够在一次运行中在两个目标之间产生最佳折衷。第三,使用高速公路工作区的应用示例评估了模型的性能。性能评估阶段的结果说明了该模型在优化工作区布局参数以及在最小化交通延误和建筑成本之间产生最佳折衷的新颖独特功能。

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