Sailing Route and Speed Optimization for Green Intermodal Transportation

Haitao Ji, Peng Wu
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引用次数: 1

Abstract

We study a third party logistics company, who uses highway and maritime transportation to deliver a set of commodities from their origins at their release times to their destinations no later than their deadlines. The paper aims to optimize sailing routes and speeds for these commodities by trucks and scheduled maritime services while minimizing the total cost and carbon emissions. We propose a bi-objective non-linear programming model, then develop a new algorithm to solve this model by combining the $\mathcal{E}$ -constraint method and a fuzzy logic method. A set of Pareto solutions can be obtained by the former, meanwhile optimal solutions according to the preferences of decision makers can be selected by the fuzzy logic method. Finally, analysis based on a case study from road-sea intermodal transportation in China shows the potential benefits. The results of a computational study indicate that the proposed model and method can give optimal sailing routes and speeds for decision makers.
绿色多式联运的航路和航速优化
我们研究了一家第三方物流公司,该公司使用公路和海上运输将一组商品在放行时间内从原产地运送到目的地,不迟于最后期限。本文旨在通过卡车和定期海运服务优化这些商品的航行路线和速度,同时最大限度地降低总成本和碳排放。提出了一个双目标非线性规划模型,并结合$\mathcal{E}$约束方法和模糊逻辑方法,提出了求解该模型的新算法。前者可以得到一组Pareto解,同时模糊逻辑方法可以根据决策者的偏好选择最优解。最后,以中国陆海多式联运为例,分析了其潜在效益。计算结果表明,所提出的模型和方法可以为决策者提供最优的航行路线和航速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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