论文标题
乘客和货运运输的多用途拾取和交货问题
Multi-purpose Pickup and Delivery Problem for Combined Passenger and Freight Transport
论文作者
论文摘要
模块化运输车辆的最新发展允许部署多用途车辆,这些车辆可以交替运输不同种类的流量。在这项研究中,我们提出了一种新颖的拾音器和交付问题,多功能拾音器和交付问题,其中多用途车辆被分配以提供多商品流量。我们使用精确优化算法和自适应大型邻里搜索算法解决了一系列用例场景。我们将多功能车队的性能与混合的一次性车队进行了比较。我们的发现表明,部署多功能车时,总成本平均可以降低13%,同时降低了总车辆旅行持续时间和总距离,平均距离分别降低了33%和16%。车队的规模平均可以减少35%。从业人员和政策制定者可以使用结果来决定与现有机队配置相比,在给定系统中,乘客和货运需求与多功能车的组合是否会产生好处。
Recent developments in modular transport vehicles allow deploying multi-purpose vehicles which can alternately transport different kinds of flows. In this study, we propose a novel variant of the pickup and delivery problem, the multi-purpose pickup and delivery problem, where multi-purpose vehicles are assigned to serve a multi-commodity flow. We solve a series of use case scenarios using an exact optimization algorithm and an adaptive large neighborhood search algorithm. We compare the performance of a multi-purpose vehicle fleet to a mixed single-use vehicle fleet. Our findings suggest that total costs can be reduced by an average of 13% when multi-purpose vehicles are deployed, while at the same time reducing the total vehicle trip duration and total distance travelled by an average of 33% and 16%, respectively. The size of the fleet can be reduced by an average of 35%. The results can be used by practitioners and policymakers to decide on whether the combination of passenger and freight demand flows with multi-purpose vehicles in a given system will yield benefits compared to existing fleet configurations.