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A Projection and Density Estimation Method for Knowledge Discovery

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  • Adam Stanski
  • Olaf Hellwich

Abstract

A key ingredient to modern data analysis is probability density estimation. However, it is well known that the curse of dimensionality prevents a proper estimation of densities in high dimensions. The problem is typically circumvented by using a fixed set of assumptions about the data, e.g., by assuming partial independence of features, data on a manifold or a customized kernel. These fixed assumptions limit the applicability of a method. In this paper we propose a framework that uses a flexible set of assumptions instead. It allows to tailor a model to various problems by means of 1d-decompositions. The approach achieves a fast runtime and is not limited by the curse of dimensionality as all estimations are performed in 1d-space. The wide range of applications is demonstrated at two very different real world examples. The first is a data mining software that allows the fully automatic discovery of patterns. The software is publicly available for evaluation. As a second example an image segmentation method is realized. It achieves state of the art performance on a benchmark dataset although it uses only a fraction of the training data and very simple features.

Suggested Citation

  • Adam Stanski & Olaf Hellwich, 2012. "A Projection and Density Estimation Method for Knowledge Discovery," PLOS ONE, Public Library of Science, vol. 7(10), pages 1-11, October.
  • Handle: RePEc:plo:pone00:0044495
    DOI: 10.1371/journal.pone.0044495
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