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Container liner shipping network design with shipper's dual preference

机译:集装箱衬里运输网络设计与托运人的双重偏好

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This paper addresses the container liner shipping network design by explicitly taking into account shipper?s inertia preference and non-inertial preference. Firstly, using the double-constrained gravity model and Newton calibration method to predict the future OD demand matrix which is considered as the input of the model, and then the liner shipping company profit maximization is taken as the objective function to optimize the ship shipping routes, ship type and ship speed. A hybrid genetic algorithm is designed to solve CLSNDP (Container Liner Shipping Network Design Problem). We validate the proposed model by employing a real liner shipping network on the trade shipping route between Asia and West Europe. Through sensitivity analysis, it is found that the service level and market share of container liner shipping company can be improved by considering the dual preference of shippers. In the non-inertia preference of shippers, when cost preference of shippers is greater than time preference, using large ships (over 7000TEU) can achieve greater profits and realize the scale economies of lager ships. ? 2020 Elsevier Ltd. All rights reserved.
机译:本文通过明确考虑托运人的惯性偏好和非惯性偏好,解决了集装箱衬里运输网络设计。首先,使用双约束重力模型和牛顿校准方法来预测未来的OD需求矩阵,被认为是模型的输入,然后将班轮运输公司利润最大化作为优化船舶航线的目标函数,船舶类型和船舶速度。混合遗传算法旨在解决CLSNDP(集装箱衬里运输网络设计问题)。我们通过在亚洲和西欧之间的贸易运输路线上采用真正的班轮航运网络来验证拟议的模型。通过敏感性分析,通过考虑托运人的双重偏好,可以提高集装箱衬里运输公司的服务水平和市场份额。在托运人的非惯性偏好中,当托运人的成本偏好大于时间偏好时,使用大型船舶(超过7000Teu)可以实现更大的利润并实现储藏船的规模经济。还是2020 Elsevier Ltd.保留所有权利。

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