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Unsupervised Ensemble Learning with Dependent Classifiers

About

In unsupervised ensemble learning, one obtains predictions from multiple sources or classifiers, yet without knowing the reliability and expertise of each source, and with no labeled data to assess it. The task is to combine these possibly conflicting predictions into an accurate meta-learner. Most works to date assumed perfect diversity between the different sources, a property known as conditional independence. In realistic scenarios, however, this assumption is often violated, and ensemble learners based on it can be severely sub-optimal. The key challenges we address in this paper are:\ (i) how to detect, in an unsupervised manner, strong violations of conditional independence; and (ii) construct a suitable meta-learner. To this end we introduce a statistical model that allows for dependencies between classifiers. Our main contributions are the development of novel unsupervised methods to detect strongly dependent classifiers, better estimate their accuracies, and construct an improved meta-learner. Using both artificial and real datasets, we showcase the importance of taking classifier dependencies into account and the competitive performance of our approach.

Ariel Jaffe, Ethan Fetaya, Boaz Nadler, Tingting Jiang, Yuval Kluger• 2015

Related benchmarks

TaskDatasetResultRank
Image ClassificationImageNet 1.0 (val)
Accuracy20.33
48
Unsupervised Ensemble LearningTree3k
Accuracy95.67
13
Unsupervised Ensemble LearningCSGO
Accuracy88.82
13
Unsupervised Ensemble LearningPetFinder
Accuracy79.57
13
Unsupervised Ensemble LearningMicroAgg2
Accuracy62.8
13
Unsupervised Ensemble LearningMnistE
Accuracy85.63
13
Unsupervised Ensemble LearningEyeMovem
Accuracy72.45
13
Unsupervised Ensemble LearningGesturePhsm
Accuracy65.38
13
Unsupervised Ensemble LearningArtiChars
Accuracy79.69
13
ClassificationAmpData Remaining subset
Accuracy99.92
8
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