• Title of article

    ModEx and Seed-Detective: Two novel techniques for high quality clustering by using good initial seeds in K-Means

  • Author/Authors

    Rahman, Md Anisur Charles Sturt University - School of Computing and Mathematics, Centre for Research in Complex Systems, Australia , Islam, Md Zahidul Charles Sturt University - School of Computing and Mathematics, Centre for Research in Complex Systems, Australia , Bossomaier, Terry Charles Sturt University - School of Computing and Mathematics, Centre for Research in Complex Systems, Australia

  • From page
    113
  • To page
    128
  • Abstract
    In this paper we present two clustering techniques called ModEx and Seed-Detective. ModEx is a modified version of an existing clustering technique called Ex-Detective. It addresses some limitations of Ex-Detective. Seed-Detective is a combination of ModEx and Simple KMeans. Seed-Detective uses ModEx to produce a set of high quality initial seeds that are then given as input to K-Means for producing the final clusters. The high quality initial seeds are expected to produce high quality clusters through K-Means. The performances of Seed-Detective and ModEx are compared with the performances of Ex-Detective, PAM, Simple K-Means (SK), Basic Farthest Point Heuristic (BFPH) and New Farthest Point Heuristic (NFPH). We use three cluster evaluation criteria namely F-measure, Entropy and Purity and four natural datasets that we obtain from the UCI Machine learning repository. In the datasets our proposed techniques perform better than the existing techniques in terms of F-measure, Entropy and Purity. The sign test results suggest a statistical significance of the superiority of Seed-Detective (and ModEx) over the existing techniques
  • Keywords
    Clustering , Classification , K , Means , Cluster evaluation , Data mining
  • Journal title
    Journal Of King Saud University - Computer an‎d Information Sciences
  • Journal title
    Journal Of King Saud University - Computer an‎d Information Sciences
  • Record number

    2713618