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January 1, 2003428 citationsOpen Access

Discriminative random fields: a discriminative framework for contextual interaction in classification

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SKSanjiv KumarHHebert

Key Points

  • This work aims to introduce discriminative random fields (DRFs) for improved classification of image regions through contextual interactions.
  • Introduced the DRF framework for classification of image regions.
  • Compared DRFs with conventional Markov random fields (MRFs) for contextual interactions.
  • Estimated all parameters simultaneously from training data.
  • DRFs improve classification performance in detecting man-made structures in natural images.
  • Demonstrated superior capability in handling neighborhood interactions compared to MRFs.

Abstract

In this work we present discriminative random fields (DRFs), a discriminative framework for the classification of image regions by incorporating neighborhood interactions in the labels as well as the observed data. The discriminative random fields offer several advantages over the conventional Markov random field (MRF) framework. First, the DRFs allow to relax the strong assumption of conditional independence of the observed data generally used in the MRF framework for tractability. This assumption is too restrictive for a large number of applications in vision. Second, the DRFs derive their classification power by exploiting the probabilistic discriminative models instead of the generative models used in the MRF framework. Finally, all the parameters in the DRF model are estimated simultaneously from the training data unlike the MRF framework where likelihood parameters are usually learned separately from the field parameters. We illustrate the advantages of the DRFs over the MRF framework in an application of man-made structure detection in natural images taken from the Corel database.

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Cite This Study

Kumar et al. (2003) studied this question.

synapsesocial.com/papers/6a0b6dcef05630e27149cfc1https://doi.org/10.1109/iccv.2003.1238478
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