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COCA: Classifier-Oriented Calibration via Textual Prototype for Source-Free Universal Domain Adaptation

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arxiv 2308.10450 v2 pith:3ZXMV73X submitted 2023-08-21 cs.CV

classification cs.CV
keywords sf-unidacocadomainsourceadaptationmodelsunidacalibration
verification ladder T0 review T1 audit T2 compute T3 formal
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Universal domain adaptation (UniDA) aims to address domain and category shifts across data sources. Recently, due to more stringent data restrictions, researchers have introduced source-free UniDA (SF-UniDA). SF-UniDA methods eliminate the need for direct access to source samples when performing adaptation to the target domain. However, existing SF-UniDA methods still require an extensive quantity of labeled source samples to train a source model, resulting in significant labeling costs. To tackle this issue, we present a novel plug-and-play classifier-oriented calibration (COCA) method. COCA, which exploits textual prototypes, is designed for the source models based on few-shot learning with vision-language models (VLMs). It endows the VLM-powered few-shot learners, which are built for closed-set classification, with the unknown-aware ability to distinguish common and unknown classes in the SF-UniDA scenario. Crucially, COCA is a new paradigm to tackle SF-UniDA challenges based on VLMs, which focuses on classifier instead of image encoder optimization. Experiments show that COCA outperforms state-of-the-art UniDA and SF-UniDA models.

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  1. Target Semantics Clustering via Text Representations for Robust Universal Domain Adaptation

    cs.CV 2025-06 conditional novelty 6.0 of 10

    A CLIP-based method that searches WordNet nouns as target semantic centers in text-embedding space and uses information maximization for alignment achieves state-of-the-art Universal Domain Adaptation on four benchmarks.

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