DocumentCode :
1185314
Title :
Fuzzy Clustering for Data Time Arrays With Inlier and Outlier Time Trajectories
Author :
Urso, Pierpaolo D.
Author_Institution :
Dipt. di Sci. Economiche, Univ. degli Studi del Molise, Campobasso
Volume :
13
Issue :
5
fYear :
2005
Firstpage :
583
Lastpage :
604
Abstract :
In many knowledge discovery and data mining tasks, fuzzy clustering is one of the most common tools for data partitioning. In this paper dynamic fuzzy clustering models for classifying a set of multivariate time trajectories (time series, sequences) are developed. In particular, by adopting an exploratory approach, based on a geometric-algebraic formulation of the data time array, different kinds of dynamic fuzzy clustering models, based on cross sectional and longitudinal aspects, are suggested. Furthermore, a modified version of the previous clustering models, that can be seen as a generalization of these models, is proposed. By utilizing these models we can obtain beneficial effects in the clustering process when anomalous trajectories (trajectories with anomalous positions and slopes) are present in the dataset; in fact the models are suitable for detecting structures of time trajectories with anomalous patterns that are not uniformly distributed over the structure´s domains and are characterized by strange slopes. In these models, the disruptive effect of the anomalous trajectories is neutralized and smoothed and the information on the influence of individual time trajectories on the detected groups is given. Furthermore, some remarks on dynamic three-way extensions of a few robust fuzzy clustering models for two-way data are suggested. Demonstrative examples are shown and a comparison assessment based on artificial multivariate time-varying data is carried out
Keywords :
data mining; geometry; pattern clustering; data mining; data partitioning; data time arrays; dynamic fuzzy clustering; geometric algebraic formulation; inlier time trajectories; knowledge discovery; outlier time trajectories; Bioinformatics; Biomedical imaging; Biomedical signal processing; Fuzzy systems; Genomics; Medical diagnostic imaging; Nervous system; Pattern recognition; Robustness; Seismology; Anomalous time trajectory; cross sectional fuzzy clustering model; data time array; influence weighting system; instantaneous and velocity dissimilarities; instantaneous and velocity weighting systems; longitudinal fuzzy clustering model; robust clustering models; time trajectory;
fLanguage :
English
Journal_Title :
Fuzzy Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6706
Type :
jour
DOI :
10.1109/TFUZZ.2005.856565
Filename :
1516151
Link To Document :
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