客包协同运输系统中的补偿方案与分送

IF 14.5 Q1 TRANSPORTATION
Yitong Yu, Kechen Ouyang, Qingyun Tian, David Z.W. Wang
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引用次数: 0

摘要

新兴的客包裹协同运输(CPT)模式旨在解决乘客和包裹在最后一英里运输需求之间的严重不平衡。通过使乘客和包裹共享一辆车的容量,CPT减少了非高峰时段的资源利用不足,缓解了高峰时段的交通拥堵。然而,这种系统的成功实施并不能保证,因为乘客可能会因为服务质量下降而拒绝共享乘车。激励乘客接受的补偿机制为这一问题提供了一个有希望的解决方案。然而,在现有的协同运输文献中,尚未对最优补偿方案的设计进行研究。为了填补这一空白,本研究将补偿影响行为纳入CPT系统的典型路由问题,其中路由问题允许将交付请求拆分为多个行程,并允许对每个节点进行多次访问。我们将此问题表述为客包协同运输系统(C-SDVRPTW-CPT)中带时间窗的分运车辆路线问题的补偿方案设计。我们通过开发一个基于代理的自适应大邻域搜索框架(SOT-ALNS)来解决这个问题。数值实验验证了模型和算法的有效性,证明了算法的快速收敛性以及协同运输和补偿的优势,可使利润提高3% ~ 10%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compensation scheme and split delivery in a collaborative passenger-parcel transportation system
The emerging collaborative passenger-parcel transport (CPT) mode aims to address the significant imbalance between passenger and parcel transport demand for last-mile delivery. By enabling passengers and parcels to share a single vehicle’s capacity, CPT reduces resource underutilization during off-peak hours and alleviates traffic congestion during peak hours. However, the successful implementation of such systems is not guaranteed, as passengers may decline shared rides due to reduced service quality. Compensation mechanisms, which incentivize passengers’ acceptance, offer a promising solution to such an issue. However, the design of optimal compensation scheme has not yet been investigated in the existing literature of collaborative transport. To fill this gap, this study incorporates compensation-affected behavior into a typical routing problem of the CPT system, where the routing problem allows delivery requests to be split across multiple trips and permits multiple visits to each node. We formulate this problem as the compensation scheme design in split delivery vehicle routing problem with time windows for a collaborative passenger-parcel transport system (C-SDVRPTW-CPT). We solve it by developing a Surrogate-based Adaptive Large Neighborhood Search framework (SOT-ALNS). Numerical experiments validate the model and algorithm, demonstrating the fast convergence of the algorithm and the advantages of collaborative transport and compensation, which improves profit by 3%–10%.
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来源期刊
CiteScore
15.20
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