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Optimal collaborative transportation service trading in B2B e-commerce logistics

机译:B2B电子商务物流中的最佳协作运输服务交易

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This paper investigates a less-than-truckload carrier collaboration decision-making problem in the e-commerce logistics network. E-commerce less-than-truckload carrier collaboration problem considers multiple logistics service providers (LSPs) forming a collaborative alliance in an e-commerce logistics network. They share their transportation requests and vehicle capabilities to maximise the total profit of the entire alliance, improve their vehicle utilisation and cope with fluctuations in demand. An e-commerce logistics trading system with collaborative decisions is designed. A collaborative transportation planning model is introduced to maximise the total profit without reducing the individual profit of the carriers with information sharing. A stochastic plant-pollinator algorithm is proposed for the problem and extensive computational experiments are conducted. The results show that the proposed plant-pollinated algorithm performs better than the genetic algorithm. Furthermore, the results illustrate that the higher degree of cooperation, the more benefits for carriers. Last but not least, since the increasing gasoline price leads to the decreasing margins for the small-and medium-sized LSPs. The results also show that it is critical for them to join in the alliance to survive in the competition.
机译:本文研究了电子商务物流网络中少于卡车的承运人协作决策问题。电子商务小于卡车承运人的协作问题考虑了多个物流服务提供商(LSP)在电子商务物流网络中形成协作联盟。他们共享运输需求和车辆能力,以最大化整个联盟的总利润,提高车辆利用率并应对需求波动。设计了具有协同决策的电子商务物流交易系统。引入了协作运输计划模型,以通过信息共享在不降低承运人个人收益的情况下最大化总利润。针对该问题提出了一种随机的植物授粉算法,并进行了广泛的计算实验。结果表明,所提出的植物授粉算法的性能优于遗传算法。此外,结果表明,合作程度越高,对承运人的好处就越多。最后但并非最不重要的一点是,由于汽油价格上涨导致中小型LSP的利润率下降。结果还表明,对于他们而言,加入联盟以在竞争中生存至关重要。

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