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Dynamic modeling and control of taxi services in large-scale urban networks: A macroscopic approach

机译:大型城市网络中出租车服务的动态建模和控制:一种宏观方法

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Taxis are increasingly becoming a prominent mobility mode in many major cities due to their accessibility and convenience. The growing number of taxi trips and the increasing contribution of taxis to traffic congestion are cause for concern when vacant taxis are not distributed optimally within the city and are unable to find unserved passengers effectively. A way of improving taxi operations is to deploy a taxi dispatch system that matches the vacant taxis and waiting passengers while considering the search friction dynamics. This paper presents a network-scale taxi dispatch model that takes into account the interrelated impact of normal traffic flows and taxi dynamics while optimizing for an effective dispatching system. The proposed model builds on the concept of the macroscopic fundamental diagram (MFD) to represent the dynamic evolution of traffic conditions. The model considers multiple taxi service firms operating in a heterogeneously congested city, where the city is assumed to be partitioned into multiple regions each represented with a well-defined MFD. A model predictive control approach is devised to control the taxi dispatch system. The results show that lack of the taxi dispatching system leads to severe accumulation of unserved taxi passengers and vacant taxis in different regions whereas the dispatch system improves the taxi service performance and reduces traffic congestion by regulating the network towards the undersaturated condition. The proposed framework demonstrates sound potential management schemes for emerging mobility solutions such as fleet of automated vehicles and demand-responsive transit services.
机译:由于出租车的可到达性和便利性,出租车在许多主要城市中正日益成为一种重要的出行方式。当空出租车在城市中分布不佳且无法有效地找到空乘的乘客时,出租车出行次数的增加和出租车对交通拥堵的贡献日益增加令人担忧。改善出租车运行状况的一种方法是,在考虑搜索摩擦动态的同时,部署与空出租车和候车乘客相匹配的出租车调度系统。本文提出了一种网络规模的出租车调度模型,该模型考虑了正常交通流量和出租车动态的相互影响,同时优化了有效的调度系统。所提出的模型基于宏观基本图(MFD)的概念来表示交通状况的动态演变。该模型考虑了在异类拥挤的城市中运营的多个出租车服务公司,假定该城市被划分为多个区域,每个区域均由定义明确的MFD表示。设计了一种模型预测控制方法来控制出租车调度系统。结果表明,出租车调度系统的缺乏会导致不同地区的无服务出租车乘客和空出租车的大量聚集,而调度系统通过将网络调整为不饱和状态来提高出租车服务性能并减少交通拥堵。拟议的框架展示了针对新兴出行解决方案(例如,自动车队和需求响应运输服务)的良好潜力管理方案。

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