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research-article

Joint scene classification and segmentation based on hidden Markov model

Published: 01 June 2005 Publication History

Abstract

Scene classification and segmentation are fundamental steps for efficient accessing, retrieving and browsing large amount of video data. We have developed a scene classification scheme using a Hidden Markov Model (HMM)-based classifier. By utilizing the temporal behaviors of different scene classes, HMM classifier can effectively classify presegmented clips into one of the predefined scene classes. In this paper, we describe three approaches for joint classification and segmentation based on HMM, which search for the most likely class transition path by using the dynamic programming technique. All these approaches utilize audio and visual information simultaneously. The first two approaches search optimal scene class transition based on the likelihood values computed for short video segment belonging to a particular class but with different search constrains. The third approach searches the optimal path in a super HMM by concatenating HMM's for different scene classes.

Cited By

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  • (2022)InstaIndoor and multi-modal deep learning for indoor scene recognitionNeural Computing and Applications10.1007/s00521-021-06781-234:9(6861-6877)Online publication date: 1-May-2022
  • (2018)Automatic Clustering of Natural Scene Using Color Spatial Envelope FeatureProceedings of the 2018 International Conference on Computing and Artificial Intelligence10.1145/3194452.3194476(144-148)Online publication date: 12-Mar-2018
  • (2014)Collaborative caching for efficient dissemination of personalized video streams in resource constrained environmentsMultimedia Systems10.1007/s00530-012-0300-220:1(1-23)Online publication date: 1-Feb-2014
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Information & Contributors

Information

Published In

cover image IEEE Transactions on Multimedia
IEEE Transactions on Multimedia  Volume 7, Issue 3
June 2005
198 pages

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IEEE Press

Publication History

Published: 01 June 2005

Author Tags

  1. Dynamic programming
  2. Hidden Markov model
  3. video analysis
  4. video scene classification
  5. video scene segmentation
  6. video understanding

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Cited By

View all
  • (2022)InstaIndoor and multi-modal deep learning for indoor scene recognitionNeural Computing and Applications10.1007/s00521-021-06781-234:9(6861-6877)Online publication date: 1-May-2022
  • (2018)Automatic Clustering of Natural Scene Using Color Spatial Envelope FeatureProceedings of the 2018 International Conference on Computing and Artificial Intelligence10.1145/3194452.3194476(144-148)Online publication date: 12-Mar-2018
  • (2014)Collaborative caching for efficient dissemination of personalized video streams in resource constrained environmentsMultimedia Systems10.1007/s00530-012-0300-220:1(1-23)Online publication date: 1-Feb-2014
  • (2013)State-of-the-art and future challenges in video scene detectionMultimedia Systems10.1007/s00530-013-0306-419:5(427-454)Online publication date: 1-Oct-2013
  • (2010)A conditional random field approach to unsupervised texture image segmentationEURASIP Journal on Advances in Signal Processing10.1155/2010/1679422010(1-12)Online publication date: 1-Feb-2010
  • (2010)VloggingACM Computing Surveys10.1145/1749603.174960642:4(1-57)Online publication date: 23-Jun-2010
  • (2010)Semantic concept mining in cricket videos for automated highlight generationMultimedia Tools and Applications10.1007/s11042-009-0337-147:3(545-579)Online publication date: 1-May-2010
  • (2009)Combining multimodal and temporal contextual information for semantic video analysisProceedings of the 16th IEEE international conference on Image processing10.5555/1819298.1819915(4269-4272)Online publication date: 7-Nov-2009
  • (2009)Automatic sports genre categorization and view-type classification over large-scale datasetProceedings of the 17th ACM international conference on Multimedia10.1145/1631272.1631380(653-656)Online publication date: 23-Oct-2009
  • (2009)Fast likelihood search for hidden Markov modelsACM Transactions on Knowledge Discovery from Data10.1145/1631162.16311663:4(1-37)Online publication date: 4-Dec-2009
  • Show More Cited By

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