NeurIPS 2016poster50 citations

Budgeted stream-based active learning via adaptive submodular maximization

Kaito Fujii, Hisashi Kashima

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}
}