2002 · 218 citations · 7 references
Scene AnalysisEngineeringMachine LearningObject CategorizationTowards Automatic DiscoveryImage AnalysisInformation RetrievalData ScienceData MiningPattern RecognitionObject ClassesVision RecognitionMachine VisionObject DetectionKnowledge DiscoveryComputer ScienceDeep LearningCategorical ModelComputer VisionObject RecognitionVisual RecognitionObject Class
We propose a method to learn heterogeneous models of object classes for visual recognition. The training images contain a preponderance of clutter and learning is unsupervised. Our models represent objects as probabilistic constellations of rigid parts (features). The variability within a class is represented by a join probability density function on the shape of the constellation and the appearance of the parts. Our method automatically identifies distinctive features in the training set. The set of model parameters is then learned using expectation maximization. When trained on different, unlabeled and unsegmented views of a class of objects, each component of the mixture model can adapt to represent a subset of the views. Similarly, different component models can also "specialize" on sub-classes of an object class. Experiments on images of human heads, leaves from different species of trees, and motor-cars demonstrate that the method works well over a wide variety of objects.
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