物理互联网环境下同时取送的动态可持续多站点车辆路径问题

Q3 Economics, Econometrics and Finance Journal of International Logistics and Trade Pub Date : 2023-03-20 DOI:10.1108/jilt-10-2022-0058
Anirut Kantasa-ard, Tarik Chargui, A. Bekrar, Abdessamad AitElCadi, Y. Sallez
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引用次数: 0

摘要

本文提出了一种解决物理互联网(PI)供应链背景下同时取货和交付(VRPSPD)车辆路径问题的方法。主要目标是最小化从PI中心供应零售商的总分销成本(运输成本和持有成本)。设计/方法/方法提出了混合整数规划(MIP)来解决小实例中的问题。提出了一种随机局部搜索(RLS)算法和一种模拟退火(SA)元启发式算法来解决较大实例的问题。结果表明,与其他启发式方法相比,SA方法在总配送成本方面提供了最优解,在持有成本和运输成本方面提供了较好的结果。此外,就碳排放总量而言,PI概念提出了比经典供应链更好的解决方案。研究局限/启示通过碳排放来验证公路路线建设的可持续性。这种方法也涉及到PI环境中运输的主要目标:减少空车,并在PI中心和零售商之间共享运输资源。然后,通过对泰国农产品的案例研究验证了所提出的方法。社会意义由于共享交通的结果和比传统路线规划更短的距离,这种方法也与减少路上的驾驶时间有关。原创性/价值本文研究了PI背景下的VRPSPD问题,该问题基于共享运输和存储资源,同时考虑可持续性。
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Dynamic sustainable multiple-depot vehicle routing problem with simultaneous pickup and delivery in the context of the physical internet
PurposeThis paper proposes an approach to solve the vehicle routing problem with simultaneous pickup and delivery (VRPSPD) in the context of the Physical Internet (PI) supply chain. The main objective is to minimize the total distribution costs (transportation cost and holding cost) to supply retailers from PI hubs.Design/methodology/approachMixed integer programming (MIP) is proposed to solve the problem in smaller instances. A random local search (RLS) algorithm and a simulated annealing (SA) metaheuristic are proposed to solve larger instances of the problem.FindingsThe results show that SA provides the best solution in terms of total distribution cost and provides a good result regarding holding cost and transportation cost compared to other heuristic methods. Moreover, in terms of total carbon emissions, the PI concept proposed a better solution than the classical supply chain.Research limitations/implicationsThe sustainability of the route construction applied to the PI is validated through carbon emissions.Practical implicationsThis approach also relates to the main objectives of transportation in the PI context: reduce empty trips and share transportation resources between PI-hubs and retailers. The proposed approaches are then validated through a case study of agricultural products in Thailand. Social implicationsThis approach is also relevant with the reduction of driving hours on the road because of share transportation results and shorter distance than the classical route planning.Originality/valueThis paper addresses the VRPSPD problem in the PI context, which is based on sharing transportation and storage resources while considering sustainability.
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来源期刊
Journal of International Logistics and Trade
Journal of International Logistics and Trade Business, Management and Accounting-Marketing
CiteScore
2.60
自引率
0.00%
发文量
6
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