Green optimisation for LRP problem using a genetic algorithm and a dynamic island model

Zineb Benotmane, Ghalem Belalem, A. Neki
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引用次数: 3

Abstract

It has grown quite conspicuous that no company is immune to the increase in fuel prices and energy sources used for air conditioning, refrigeration and heating, as well as traffic congestion and the degradation of road infrastructures. It is for this reason that companies are increasingly concerned about energy and environmental issues and are, therefore, more aware of the need to revise their logistics for the purpose of reducing costs and increasing competitiveness. In order to minimise the energy costs associated with transportation, it is sensical to consider a two-echelon location routing problem (2E-LRP) where two distribution levels are composed of three disjoint sets of nodes corresponding to the depots, the distribution centres and the customers, respectively. For this, we propose a mathematical model, a genetic algorithm, and a dynamic island model to optimise the assignment and the routing of freight. Eventual results show a minimisation of energy cost and CO2 rate.
基于遗传算法和动态孤岛模型的LRP问题绿色优化
越来越明显的是,没有一家公司能够不受燃料价格和用于空调、制冷和供暖的能源价格上涨以及交通堵塞和道路基础设施退化的影响。正是由于这个原因,公司越来越关注能源和环境问题,因此,更加意识到需要修改他们的物流,以降低成本和提高竞争力。为了最小化与运输相关的能源成本,考虑一个两梯次位置路由问题(2E-LRP)是有意义的,其中两个配送层由三个不相交的节点组成,分别对应于仓库、配送中心和客户。为此,我们提出了一个数学模型、一个遗传算法和一个动态岛模型来优化货物分配和路线。最终的结果表明,能源成本和二氧化碳排放都达到了最低。
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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