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Active Learning Over Multiple Domains in Natural Language Tasks

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arxiv 2202.00254 v2 pith:PVKGN6MS submitted 2022-02-01 cs.CL cs.LG

classification cs.CLcs.LG
keywords activelearningmethodsdomaindatadomainsanalysiseffective
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Studies of active learning traditionally assume the target and source data stem from a single domain. However, in realistic applications, practitioners often require active learning with multiple sources of out-of-distribution data, where it is unclear a priori which data sources will help or hurt the target domain. We survey a wide variety of techniques in active learning (AL), domain shift detection (DS), and multi-domain sampling to examine this challenging setting for question answering and sentiment analysis. We ask (1) what family of methods are effective for this task? And, (2) what properties of selected examples and domains achieve strong results? Among 18 acquisition functions from 4 families of methods, we find H-Divergence methods, and particularly our proposed variant DAL-E, yield effective results, averaging 2-3% improvements over the random baseline. We also show the importance of a diverse allocation of domains, as well as room-for-improvement of existing methods on both domain and example selection. Our findings yield the first comprehensive analysis of both existing and novel methods for practitioners faced with multi-domain active learning for natural language tasks.

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  1. Optimizing Active Learning in Vision-Language Models via Parameter-Efficient Uncertainty Calibration

    cs.CV 2025-07 conditional novelty 5.0 of 10

    C-PEAL trains the active learning selector with a loss that raises entropy for wrong predictions and lowers it for correct ones, improving sample selection for CLIP-style models under prompt learning and LoRA.

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