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Deep Active Learning for Sequence Labeling Based on Diversity and Uncertainty in Gradient
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Recently, several studies have investigated active learning (AL) for natural language processing tasks to alleviate data dependency. However, for query selection, most of these studies mainly rely on uncertainty-based sampling, which generally does not exploit the structural information of the unlabeled data. This leads to a sampling bias in the batch active learning setting, which selects several samples at once. In this work, we demonstrate that the amount of labeled training data can be reduced using active learning when it incorporates both uncertainty and diversity in the sequence labeling task. We examined the effects of our sequence-based approach by selecting weighted diverse in the gradient embedding approach across multiple tasks, datasets, models, and consistently outperform classic uncertainty-based sampling and diversity-based sampling.
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Maximally Separated Active Learning
MSAL scores uncertainty by cosine similarity to fixed equiangular class prototypes, and MSAL-D adds prototype-based diversity, reporting improved AUBC on MNIST, SVHN, and TinyImageNet.
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