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Bilevel optimization approach to design of network of bike lanes

机译:自行车道网络设计的双层优化方法

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摘要

A bike lane is an effective way to improve cycling safety and to decrease greenhouse gas emissions with the promotion of cycling. Improvements include high-quality off-road facilities and on-road bike lanes. Whereas construction of off-road lanes is not always possible because of urban land constraints and construction costs, on-road lanes can be a cost-effective alternative. An optimization framework for the design of a network of bike lanes in an urban road network was proposed. This framework identified links on which a bike lane could be introduced. Allocation of a lane to cyclists would increase the use of cycling, although it could disadvantage auto traffic. The presented approach balances the effects of a bike lane for all stakeholders. A bilevel optimization was proposed to encompass the benefits of cyclists and car users at the upper level and a model for traffic and bike demand assignment at the lower level. The objective function was defined by a weighted sum of a measure for private car users (total travel time) versus a measure for bike users (total travel distance on bike lanes). A genetic algorithm was developed to solve the bilevel formulation, which included introduction of a special crossover technique and a mutation technique. The proposed optimization will help transport authorities at the planning stage to quantify the outcomes of various strategies for active transport.
机译:自行车道是通过促进自行车运动来提高自行车安全性并减少温室气体排放的有效方法。改进之处包括高质量的越野设施和公路自行车道。尽管由于城市土地的限制和建设成本的原因,越野车道的建设并非总是可行的,但公路车道是一种经济高效的选择。提出了城市道路网络中自行车道网络设计的优化框架。该框架确定了可以引入自行车道的链接。将车道分配给骑自行车的人会增加自行车的使用,尽管这可能会不利于汽车通行。所提出的方法平衡了自行车道对所有利益相关者的影响。提出了双层优化,以在较高层级包含骑车人和汽车使用者的利益,在较低层级包含交通和自行车需求分配模型。目标函数由私家车使用者的度量(总行驶时间)与自行车使用者的度量(自行车道的总行驶距离)的加权总和定义。开发了一种遗传算法来解决两级公式,其中包括引入特殊的交叉技术和变异技术。拟议的优化将帮助运输当局在计划阶段量化主动运输各种策略的结果。

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