Liu Bing, Ji Yuxiong, Cats Oded
Key Laboratory of Road and Traffic Engineering of the Ministry of Education, Tongji University, Shanghai, People's Republic of China.
Department of Transport & Planning, Delft University of Technology, Delft, The Netherlands.
Transportmetr A Transp Sci. 2023 Jul 20;21(1):329-357. doi: 10.1080/23249935.2023.2236240. eCollection 2025.
Public transport (PT) agencies are increasingly keen on integrating ride-hailing (RH) services with PT to improve overall mobility. Understanding the traffic flow distribution in the integrated system is vital for the policy decision-making and services design of such a system. We propose a stochastic user equilibrium (SUE) model for multimodal transport systems consisting of private car, PT and RH. The travel costs in the SUE model are investigated using a multimodal graph representation to capture the relationship of different travel modes in the integrated system. We apply the proposed model to a toy case and a real-world case. A RH subsidy strategy is compared with the benchmark to demonstrate travellers' route and mode shifts in the integrated system. Our findings offer insights on subsidising RH services through the proposed model, and provide valuable knowledge on the planning and design of the integrated system.
公共交通(PT)机构越来越热衷于将拼车(RH)服务与公共交通整合,以改善整体出行状况。了解综合系统中的交通流分布对于该系统的政策决策和服务设计至关重要。我们针对由私家车、公共交通和拼车组成的多式联运系统提出了一种随机用户均衡(SUE)模型。使用多式联运图表示法研究SUE模型中的出行成本,以捕捉综合系统中不同出行方式之间的关系。我们将所提出的模型应用于一个简化案例和一个实际案例。将一种拼车补贴策略与基准进行比较,以展示综合系统中旅行者的路线和方式转变。我们的研究结果通过所提出的模型为补贴拼车服务提供了见解,并为综合系统的规划和设计提供了有价值的知识。