Designing zonal-based flexible bus services under stochatic demand

Enoch Lee, Xue-kai Cen, H. Lo, K. Ng
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引用次数: 7

Abstract

In this paper, we develop a zonal-based flexible bus services (ZBFBS) by considering both passenger demands’ spatial (origin-destination or OD) and volume stochastic variations. Service requests are grouped by zonal OD pairs and number of passengers per request, and aggregated into demand categories which follow certain probability distributions. A two-stage stochastic program is formulated to minimize the expected operating cost of ZBFBS, in which the zonal visit sequences of vehicles are determined in stage 1, whereas in stage 2, service requests are assigned to either regular routes determined in stage 1 or ad hoc services that incur additional costs. Demand volume reliability and detour time reliability are introduced to ensure quality of the services and separate the problem into two phases for efficient solutions. In phase 1, given the reliability requirements, we minimize the cost of operating the regular services. In phase 2, we optimize the passenger assignment to vehicles to minimize the expected ad hoc service cost. The reliabilities are then optimized by a gradient-based approach to minimize the sum of the regular service operating cost and expected ad hoc service cost. We conduct numerical studies on vehicle capacity, detour time limit and demand volume to demonstrate the potential of ZBFBS, and apply the model to Chengdu, China, based on real data to illustrate its applicability.
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随机需求下基于区域的灵活公交服务设计
本文在考虑乘客需求空间(始发地或OD)和客运量随机变化的基础上,提出了一种基于区域的灵活公交服务模式。服务请求按区域OD对和每个请求的乘客数量分组,并按照一定的概率分布聚合到需求类别中。为了最大限度地降低ZBFBS的预期运营成本,设计了一个两阶段的随机方案,其中在第一阶段确定车辆的区域访问顺序,而在第二阶段,将服务请求分配给第一阶段确定的常规路线或产生额外成本的临时服务。为了保证服务质量,引入了需求量可靠性和绕行时间可靠性,并将问题分为两个阶段进行有效解决。在阶段1中,给定可靠性要求,我们将运行常规服务的成本降至最低。在第二阶段,我们优化乘客分配到车辆,以最小化预期的临时服务成本。然后,通过基于梯度的方法对可靠性进行优化,以最小化常规服务运营成本和预期临时服务成本的总和。通过对车辆通行能力、绕行时限和需求量的数值研究,论证了ZBFBS的潜力,并以中国成都市为例,基于实际数据验证了该模型的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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