不确定性下零担运输承运商的需求驱动枢纽网络设计

Demand-Driven Hub Network Design Under Uncertainty for Less-Than-Truckload Carriers

Transportation Science · 2026
被引 0
ABS 3

中文导读

研究了零担运输承运商在货运量不确定时,如何通过枢纽选址和车辆调度决策,并选择性接受额外客户需求来扩大服务覆盖,以最大化利润。

Abstract

We consider a planning problem for freight transportation carriers that seek to profitably match supply with demand while recognizing uncertainty in shipment volumes. On the supply side, the problem determines transportation network design decisions regarding hub locations and the number of vehicles to be dispatched within the network in each period of the planning horizon. On the demand side, the problem incorporates the carrier’s ability to expand its service coverage by selectively accepting additional customer demands beyond its existing contractual base. Furthermore, although some of these additional customers seek a long-term commitment from the carrier, others are transactional and only require the transportation of a single set of shipments. We refer to this problem as the demand-driven hub network design under uncertainty problem and formulate it as a two-stage stochastic program. Further, we develop an enhanced Benders decomposition–based solution method for solving instances of this model. The solution methodology is inspired by partial Benders decomposition, leveraging a problem reformulation that embeds subsets of subproblem variables and constraints into the master problem while also incorporating valid inequalities to strengthen the formulation. We illustrate with an extensive computational study that the proposed method outperforms adaptations of benchmarks proposed for similar problems. We validate the benefits of solving the proposed model, which integrates decisions that have not yet been jointly modeled, with an analysis based on sample average approximation. Funding: This work was supported by the Natural Sciences and Engineering Research Council of Canada [Grant RGPIN-2022-03523].

物流与供应链管理网络规划与设计随机规划鲁棒优化