论文标题

计划乘车服务,并具有弯路限制,以实现空间异质需求:一种多区排队网络方法

Planning ride-pooling services with detour restrictions for spatially heterogeneous demand: A multi-zone queuing network approach

论文作者

Liu, Yining, Ouyang, Yanfeng

论文摘要

这项研究介绍了一种多区排队网络模型,用于稳态乘车操作,可满足异质需求,然后以该模型为基础,以优化乘车服务的设计。通过将研究区域分配到一组相对均匀的区域中来解决空间异质性,并施加了一组标准,以避免在匹配的乘客中进行重大绕道。然后开发了广义的多区排队网络模型,以描述车辆在每个区域内和邻近区域内如何过渡,以及如何通过闲置或部分占用的车辆为乘客提供服务。基于排队网络模型构建了大型方程式系统,以分析评估稳态系统性能。然后,我们制定一个受约束的非线性计划,以优化乘车服务的设计,例如区域级车辆部署,车辆路线路径和车辆重新平衡操作。还提出了一种定制的解决方案方法来分解和解决优化问题。提出的模型和解决方案方法应用于假设的案例和现实世界中的芝加哥案例研究,以证明其适用性并吸引见解。基于代理的模拟还用于证实所提出的分析模型的结果。这些数字示例不仅揭示了有关乘车服务如何满足异质需求的有趣见解,而且还强调了在设计乘车服务时解决需求异质性的重要性。

This study presents a multi-zone queuing network model for steady-state ride-pooling operations that serve heterogeneous demand, and then builds upon this model to optimize the design of ride-pooling services. Spatial heterogeneity is addressed by partitioning the study region into a set of relatively homogeneous zones, and a set of criteria are imposed to avoid significant detours among matched passengers. A generalized multi-zone queuing network model is then developed to describe how vehicles' states transition within each zone and across neighboring zones, and how passengers are served by idle or partially occupied vehicles. A large system of equations is constructed based on the queuing network model to analytically evaluate steady-state system performance. Then, we formulate a constrained nonlinear program to optimize the design of ride-pooling services, such as zone-level vehicle deployment, vehicle routing paths, and vehicle rebalancing operations. A customized solution approach is also proposed to decompose and solve the optimization problem. The proposed model and solution approach are applied to a hypothetical case and a real-world Chicago case study, so as to demonstrate their applicability and to draw insights. Agent-based simulations are also used to corroborate results from the proposed analytical model. These numerical examples not only reveal interesting insights on how ride-pooling services serve heterogeneous demand, but also highlight the importance of addressing demand heterogeneity when designing ride-pooling services.

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