A transgenic algorithm for the Vehicle Routing Problem with Time Windows

J. Ruiz-Vanoye, O. Díaz-Parra, F. Cocón, M. Arias, Ana Canepa Saenz
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引用次数: 2

Abstract

In this paper, we present a transgenic computer algorithm based on the transformation mechanism of horizontal gene transfer to solve the Vehicle Routing Problem with Time Windows (VRPTW). The VRPTW is the problem of minimising transportation costs while satisfying some restrictions as the time, vehicle capacity and the demand of each client. Horizontal gene artificial transfer is a form of genetic engineering. The transgenic algorithm is considered as a horizontal gene transfer algorithm, a meta-heuristics algorithm, or a bio-inspired algorithm based on horizontal gene transfer and symbiogenesis. The transgenic algorithm uses a data-mining technique (clustering) to group similar characteristics of the VRPTW instance to obtain the initial population (one VRPTW individual), a genetic transfer phase inspired by the transference of genetic codes of a bacterial gene (depot) contained in mechanisms for the horizontal gene transfer, and an intelligent mutation operator inspired by symbiogenesis called symbion operator. The transgenic algorithm (lateral gene transfer algorithm, or horizontal gene transfer algorithm) involves deliberate genetic modification rather than evolutionary aspects. We demonstrate that it is possible to deploy a transgenic algorithm based on horizontal gene transfer to solve (in fewer generations and less time) the VRPTW than the results of the genetic algorithm.
带时间窗车辆路径问题的转基因算法
本文提出了一种基于水平基因转移转化机制的转基因计算机算法来解决带时间窗的车辆路径问题。VRPTW问题是在满足时间、车辆容量和每个客户需求等限制的情况下,将运输成本最小化的问题。水平基因人工转移是基因工程的一种形式。转基因算法被认为是一种水平基因转移算法、一种元启发式算法或基于水平基因转移和共生的生物启发算法。该转基因算法利用数据挖掘技术(聚类)对VRPTW实例的相似特征进行分组,得到初始群体(一个VRPTW个体)、受水平基因转移机制中细菌基因(库)遗传密码转移启发的遗传转移阶段以及受共生启发的智能突变算子(共生算子)。转基因算法(横向基因转移算法或横向基因转移算法)涉及有意的基因修改而不是进化方面。我们证明,有可能部署基于水平基因转移的转基因算法来解决(在更少的代和更短的时间内)VRPTW比遗传算法的结果。
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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