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首页> 外文期刊>Transportation Research Record >Work Zone Optimization for Two-Lane Highway Resurfacing Projects with an Alternate Route
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Work Zone Optimization for Two-Lane Highway Resurfacing Projects with an Alternate Route

机译:备选路线的两车道公路重铺工程的工作区优化

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摘要

Pavements on two-lane two-way highways are usually resurfaced by closing one lane at a time. Vehicles then travel in the remaining lane along the work zone, alternating directions within each control cycle. In an earlier work, Chen and Schonfeld developed a work zone optimization model for two-lane highways with time-dependent inflows and no detours, based on simulated annealing. In this paper, several alternatives are evaluated, defined by the number of closed lanes and fractions of traffic diverted to alternate routes. The algorithm referred to as SAUASD (simulated annealing for uniform alternatives with a single detour) is developed to find the best single alternative within a resurfacing project. The algorithm referred to as SAMASD (simulated annealing for mixed alternatives with a single detour) is developed to search through possible mixed alternatives and their diverted fractions, to minimize total cost, further including agency cost (resurfacing cost and idling cost) and user cost (user delay cost and accident cost). Thus, traffic management plans are developed with uniform or mixed alternatives within a two-lane highway resurfacing project.
机译:通常,通过一次关闭一个车道来重铺两车道双向道路上的人行道。然后,车辆沿着工作区在其余车道上行驶,在每个控制周期内交替改变方向。在早期的工作中,Chen和Schonfeld在模拟退火的基础上,为流入量随时间变化且无de回的两车道公路开发了工作区优化模型。在本文中,对几种替代方案进行了评估,它们由封闭车道的数量和转移到替代路线的交通流量所占的比例确定。开发了称为SAUASD的算法(模拟退火,对单个替代品进行统一绕行),以便在铺面工程中找到最佳的单个替代品。开发了一种称为SAMASD的算法(对带有一个de回曲折的混合替代品进行模拟退火),以搜索可能的混合替代品及其分流部分,以最大程度地降低总成本,进一步包括代理商成本(铺面成本和空转成本)和用户成本(用户延迟成本和事故成本)。因此,在两车道的高速公路改建项目中,制定了统一或混合方案的交通管理计划。

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