In this paper, we investigate a practical yet challenging task: On-the-fly Category Discovery (OCD). This task focuses on the online identification of newly arriving stream data that may belong to both known and unknown categories, utilizing the category knowledge from only labeled data. Existing OCD methods are devoted to fully mining transferable knowledge from only labeled data. However, the transferability learned by these methods is limited because the knowledge contained in known categories is often insufficient, especially when few annotated data/categories are available in fine-grained recognition. To mitigate this limitation, we propose a diffusion-based OCD framework, dubbed DiffGRE, which integrates Generation, Refinement, and Encoding in a multi-stage fashion. Specifically, we first design an attribute-composition generation method based on cross-image interpolation in the diffusion latent space to synthesize novel samples. Then, we propose a diversitydriven refinement approach to select the synthesized images that differ from known categories for subsequent OCD model training. Finally, we leverage a semi-supervised leader encoding to inject additional category knowledge contained in synthesized data into the OCD models, which can benefit the discovery of both known and unknown categories during the on-the-fly inference process. Extensive experiments demonstrate the superiority of our DiffGRE over previous methods on six fine-grained datasets. The codes are available here: https://github.com/XLiu443/DiffGRE

Generate, Refine, and Encode: Leveraging Synthesized Novel Samples for On-the-Fly Fine-Grained Category Discovery / Liu, X., Pu, N., Zheng, H., Li, W., Sebe, N., Zhong, Z.. - (2025), pp. 1078-1087. (International Conference on Computer Vision Honolulu October 2025) [10.1109/iccv51701.2025.00108].

Generate, Refine, and Encode: Leveraging Synthesized Novel Samples for On-the-Fly Fine-Grained Category Discovery

Pu, Nan;Zheng, Haiyang;Sebe, Nicu;Zhong, Zhun
2025-01-01

Abstract

In this paper, we investigate a practical yet challenging task: On-the-fly Category Discovery (OCD). This task focuses on the online identification of newly arriving stream data that may belong to both known and unknown categories, utilizing the category knowledge from only labeled data. Existing OCD methods are devoted to fully mining transferable knowledge from only labeled data. However, the transferability learned by these methods is limited because the knowledge contained in known categories is often insufficient, especially when few annotated data/categories are available in fine-grained recognition. To mitigate this limitation, we propose a diffusion-based OCD framework, dubbed DiffGRE, which integrates Generation, Refinement, and Encoding in a multi-stage fashion. Specifically, we first design an attribute-composition generation method based on cross-image interpolation in the diffusion latent space to synthesize novel samples. Then, we propose a diversitydriven refinement approach to select the synthesized images that differ from known categories for subsequent OCD model training. Finally, we leverage a semi-supervised leader encoding to inject additional category knowledge contained in synthesized data into the OCD models, which can benefit the discovery of both known and unknown categories during the on-the-fly inference process. Extensive experiments demonstrate the superiority of our DiffGRE over previous methods on six fine-grained datasets. The codes are available here: https://github.com/XLiu443/DiffGRE
2025
2025 IEEE/CVF International Conference on Computer Vision (ICCV)
New York
IEEE
979-8-3315-8775-8
979-8-3315-8776-5
Liu, Xiao; Pu, Nan; Zheng, Haiyang; Li, Wenjing; Sebe, Nicu; Zhong, Zhun
Generate, Refine, and Encode: Leveraging Synthesized Novel Samples for On-the-Fly Fine-Grained Category Discovery / Liu, X., Pu, N., Zheng, H., Li, W., Sebe, N., Zhong, Z.. - (2025), pp. 1078-1087. (International Conference on Computer Vision Honolulu October 2025) [10.1109/iccv51701.2025.00108].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/486951
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