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From Cross-Modal to Mixed-Modal Visible-Infrared Re-Identification

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arxiv 2501.13307 v1 pith:75TP7DX5 submitted 2025-01-23 cs.CV

classification cs.CV
keywords mixedmodalitiesacrossapproachdomainmixed-modalmixerapplications
verification ladder T0 review T1 audit T2 compute T3 formal
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Visible-infrared person re-identification (VI-ReID) aims to match individuals across different camera modalities, a critical task in modern surveillance systems. While current VI-ReID methods focus on cross-modality matching, real-world applications often involve mixed galleries containing both V and I images, where state-of-the-art methods show significant performance limitations due to large domain shifts and low discrimination across mixed modalities. This is because gallery images from the same modality may have lower domain gaps but correspond to different identities. This paper introduces a novel mixed-modal ReID setting, where galleries contain data from both modalities. To address the domain shift among inter-modal and low discrimination capacity in intra-modal matching, we propose the Mixed Modality-Erased and -Related (MixER) method. The MixER learning approach disentangles modality-specific and modality-shared identity information through orthogonal decomposition, modality-confusion, and ID-modality-related objectives. MixER enhances feature robustness across modalities, improving cross-modal and mixed-modal settings performance. Our extensive experiments on the SYSU-MM01, RegDB and LLMC datasets indicate that our approach can provide state-of-the-art results using a single backbone, and showcase the flexibility of our approach in mixed gallery applications.

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  1. Cross-Spectral Body Recognition with Side Information Embedding: Benchmarks on LLCM and Analyzing Range-Induced Occlusions on IJB-MDF

    cs.CV 2025-06 conditional novelty 6.0 of 10

    Encoding camera identity, rather than spectral domain, in a side embedding reaches state-of-the-art visible-infrared person matching on LLCM, while cross-range matching on IJB-MDF reveals a large scale-induced perform...

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