高效电子商务配送的绿色最后一英里路线规划

Q2 Engineering
Siwaporn Kunnapapdeelert, James Vincent Johnson, P. Phalitnonkiat
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引用次数: 1

摘要

摘要本研究旨在设计基于成本最小化和温室气体(GHG)排放最小化的车辆路线,帮助企业通过粒子群优化(PSO)解决取货和送货(VRPPD)的车辆路线问题。采用一种有效的元启发式搜索技术——粒子群优化(PSO)来设计这些问题的最优路径。Li和Lim(2001)的模拟数据被用来评估PSO在解决带有取货和送货的绿色车辆路线问题(green VRPPD)中的性能。研究结果表明,在向居住在特定区域(称为集群)的客户分发产品时,应该使用绿色车辆的取货和送货路线问题。但是,Green VRPPD的车辆路线设计在覆盖服务区随机分配产品时,成本较高。当物流供应商决定使用绿色VRPPD而不是VRPPD时,如果需要增加车辆数量,他们需要考虑可能的更高成本。粒子群算法是解决VRPPD的有效方法。该研究基于柴油和液化石油气(LPG)燃料消耗的两种不同目标函数的使用结果进行了比较。这表明,将直接温室气体排放作为目标函数来求解VRPPD,而不是将总成本作为所有测试用例的目标函数来求解VRPPD,提供了更清洁的路线。然而,由于Green VRPPD需要更多的车辆和更长的行驶距离,这比将总成本作为目标函数需要更大的总成本。考虑到所使用的燃料类型,液化石油气显然比柴油更环保,最高可达53.61%。这篇论文应该对广泛的读者感兴趣,包括那些关注车辆路线问题,运输,物流和环境管理的人。研究结果表明,在向集群分配产品时,应使用绿色车辆路线问题,包括取货和送货。但是,Green VRPPD的车辆路线设计在覆盖服务区随机分配产品时,成本较高。当物流供应商决定使用绿色VRPPD而不是VRPPD时,如果需要增加车辆数量,他们需要考虑可能的更高成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green last-mile route planning for efficient e-commerce distribution
Abstract This study aims to design vehicle routes based on cost minimisation and the minimisation of greenhouse gasses (GHG) emissions to help companies solve the vehicle routing problem with pickup and delivery (VRPPD) via particle swarm optimisation (PSO). An effective metaheuristics search technique called particle swarm optimisation (PSO) was applied to design the optimal route for these problems. Simulated data from Li and Lim (2001) were used to evaluate the PSO performance for solving green vehicle routing problems with pickup and delivery (Green VRPPD). The findings suggest that green vehicle routing problems with pickup and delivery should be used when distributing products to customers living in a specific area called a cluster. However, the design of vehicle routes by Green VRPPD costs more when used to distribute products to customers living randomly in a coverage service area. When logistics providers decide to use Green VRPPD instead of VRPPD, they need to be concerned about possible higher costs if an increase in the number of vehicles is needed. PSO has been confirmed for solving VRPPD effectively. The study compared the results based on the use of two different objective functions with fuel consumption from diesel and liquefied petroleum gas (LPG). It indicates that solving VRPPD by considering the emissions of direct greenhouse gases as an objective function provides cleaner routes, rather than considering total cost as the objective function for all test cases. However, as Green VRPPD requires more vehicles and longer travel distances, this requires a greater total cost than considering the total cost as the objective function. Considering the types of fuels used, it is obvious that LPG is more environmentally friendly than diesel by up to 53.61 %. This paper should be of interest to a broad readership, including those concerned with vehicle routing problems, transportation, logistics, and environmental management. The findings suggest that green vehicle routing problems with pickup and delivery should be used when distributing products to a cluster. However, the design of vehicle routes by Green VRPPD costs more when used to distribute products to customers living randomly in a coverage service area. When logistics providers decide to use Green VRPPD instead of VRPPD, they need to be concerned about possible higher costs if an increase in the number of vehicles is needed.
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来源期刊
Engineering Management in Production and Services
Engineering Management in Production and Services Business, Management and Accounting-Management Information Systems
CiteScore
3.40
自引率
0.00%
发文量
27
审稿时长
7 weeks
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