• DocumentCode
    587343
  • Title

    A transgenic algorithm for the Vehicle Routing Problem with Time Windows

  • Author

    Ruiz-Vanoye, J.A. ; Diaz-Parra, O. ; Cocon, F. ; Buenabad-Arias, A. ; Saenz, A.C.

  • Author_Institution
    Univ. Autonoma del Carmen, Ciudad del Carmen, Mexico
  • fYear
    2012
  • fDate
    5-9 Nov. 2012
  • Firstpage
    138
  • Lastpage
    143
  • 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.
  • Keywords
    cost reduction; data mining; genetic algorithms; genetic engineering; pattern clustering; vehicle routing; VRPTW; bacterial gene; bio-inspired algorithm; clustering; data-mining technique; genetic code transference; genetic engineering; group similar characteristics; horizontal gene artificial transfer algorithm; horizontal gene transfer; intelligent mutation operator; lateral gene transfer algorithm; meta-heuristics algorithm; symbiogenesis; symbion operator; transformation mechanism; transgenic computer algorithm; transportation cost minimisation; vehicle capacity; vehicle demand; vehicle routing problem with time windows; Clustering algorithms; Genetic algorithms; Genetics; Routing; Sociology; Statistics; Vehicles; Bio-inspired algorithms; Horizontal Gene Transfer Algorithms; Transgenic Algorithms; Transportation; Vehicle Routing Problem with Time Windows;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nature and Biologically Inspired Computing (NaBIC), 2012 Fourth World Congress on
  • Conference_Location
    Mexico City
  • Print_ISBN
    978-1-4673-4767-9
  • Type

    conf

  • DOI
    10.1109/NaBIC.2012.6402252
  • Filename
    6402252