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首页> 外文期刊>IEEE Transactions on Intelligent Transportation Systems >Joint Optimization of Running Route and Scheduling for the Mixed Demand Responsive Feeder Transit With Time-Dependent Travel Times
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Joint Optimization of Running Route and Scheduling for the Mixed Demand Responsive Feeder Transit With Time-Dependent Travel Times

机译:运行路线的联合优化和混合需求响应馈线交通的运行路径和调度随时间依赖旅行时间

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摘要

As an emerging urban public transport mode, responsive feeder transit system is flexible and can offer door-to-door services between new districts at margins with low urban transit coverage and trunk bus station. In this study, a joint optimization of running route and scheduling for responsive feeder transit under mixed demand (i.e., reservation and real-time demands) of the time-dependent road network was investigated. A two-stage optimization method was designed together with considering the mixed demands. At the first stage, the initial running route and scheduling were determined according to all reservation demands. At the second stage, the running route and scheduling were continuously optimized based on the real-time demands. The real-time demand responsive strategy, which is built up by using quantitative batch treatment rather than immediate treatment and dynamic route updating strategy for global optimization, were designed by utilizing the submission order of real-time demands. A joint optimization model of running route and scheduling was constructed based on the quantitative batch decision points in the time-dependent road network together with combination of the actual road network. In this model, the minimum total system cost was used, which is composed of the vehicle running costs and passengers' traveling time costs with constraints including vehicle capacity, passengers' time window, and vehicle running time. A solving algorithm based on the adaptive genetic algorithm was designed by considering the characteristics of the joint optimization model.
机译:作为新兴城市公共交通模式,响应式送料器过境系统是灵活的,可以为新地区之间的户口服务提供低城市过境覆盖范围和后备箱公交车站的边缘。在该研究中,研究了在时间依赖性道路网络的混合需求下运行路线的联合优化和响应馈线过境的调度,并进行了时间依赖的道路网络。考虑到混合需求,设计了一种两级优化方法。在第一阶段,根据所有预订需求确定初始运行路线和调度。在第二阶段,基于实时需求不断优化运行路径和调度。通过利用实时需求的提交顺序,设计了通过使用定量批量处理而不是立即治疗和动态路线更新策略构建的实时需求响应策略,而是通过利用实时要求的提交顺序来设计。基于时间依赖的道路网络中的定量批量决策点与实际道路网络的组合构建了运行路径和调度的联合优化模型。在该模型中,使用了最小的总系统成本,其由车辆运行成本和乘客行驶时间成本与包括车辆容量,乘客的时间窗口和车辆运行时间的限制组成。通过考虑联合优化模型的特性,设计了一种基于自适应遗传算法的求解算法。

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