Budgeted stream-based active learning via adaptive submodular maximization
Abstract
Active learning enables us to reduce the annotation cost by adaptively selecting unlabeled instances to be labeled. For pool-based active learning, several effective methods with theoretical guarantees have been developed through maximizing some utility function satisfying adaptive submodularity. In contrast, there have been few methods for stream-based active learning based on adaptive submodularity. In this paper, we propose a new class of utility functions, policy-adaptive submodular functions, and prove this class includes many existing adaptive submodular functions appearing in real world problems. We provide a general framework based on policy-adaptive submodularity that makes it possible to convert existing pool-based methods to stream-based methods and give theoretical guarantees on their performance. In addition we empirically demonstrate their effectiveness comparing with existing heuristics on common benchmark datasets.
BibTeX
@inproceedings{NIPS2016_07cdfd23,
author = {Fujii, Kaito and Kashima, Hisashi},
booktitle = {Advances in Neural Information Processing Systems},
editor = {D. Lee and M. Sugiyama and U. Luxburg and I. Guyon and R. Garnett},
pages = {},
publisher = {Curran Associates, Inc.},
title = {Budgeted stream-based active learning via adaptive submodular maximization},
url = {https://proceedings.neurips.cc/paper_files/paper/2016/file/07cdfd23373b17c6b337251c22b7ea57-Paper.pdf},
volume = {29},
year = {2016}
}