Journal Article

·2017

Multiple-instance ensemble learning for hyperspectral images

Ugur Ergul YTU , Gökhan Bilgin YTU

Journal of Applied Remote Sensing

Abstract

An ensemble framework for multiple-instance (MI) learning (MIL) is introduced for use in hyperspectral images (HSIs) by inspiring the bagging (bootstrap aggregation) method in ensemble learning. Ensemble-based bagging is performed by a small percentage of training samples, and MI bags are formed by a local windowing process with variable window sizes on selected instances. In addition to bootstrap aggregation, random subspace is another method used to diversify base classifiers. The proposed method is implemented using four MIL classification algorithms. The classifier model learning phase is carried out with MI bags, and the estimation phase is performed over single-test instances. In the experimental part of the study, two different HSIs that have ground-truth information are used, and comparative results are demonstrated with state-of-the-art classification methods. In general, the MI ensemble approach produces more compact results in terms of both diversity and error compared to equipollent non-MIL algorithms.

Keywords

Hyperspectral imaging Ensemble learning Subspace topology Artificial intelligence Random forest Computer science Pattern recognition (psychology) Classifier (UML) Random subspace method Ground truth Machine learning

Subject Areas

Image Retrieval and Classification Techniques ·Computer Vision and Pattern Recognition ·Physical Sciences
Remote-Sensing Image Classification ·Media Technology ·Physical Sciences
Advanced Image and Video Retrieval Techniques ·Computer Vision and Pattern Recognition ·Physical Sciences

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