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WRIM-Net: Wide-Ranging Information Mining Network for Visible-Infrared Person Re-Identification

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arxiv 2408.10624 v1 pith:OL27U4CN submitted 2024-08-20 cs.CV cs.AI

classification cs.CVcs.AI
keywords informationminingnetworkcross-modalitymiimmodality-invariantmulti-dimensionwrim-net
verification ladder T0 review T1 audit T2 compute T3 formal
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For the visible-infrared person re-identification (VI-ReID) task, one of the primary challenges lies in significant cross-modality discrepancy. Existing methods struggle to conduct modality-invariant information mining. They often focus solely on mining singular dimensions like spatial or channel, and overlook the extraction of specific-modality multi-dimension information. To fully mine modality-invariant information across a wide range, we introduce the Wide-Ranging Information Mining Network (WRIM-Net), which mainly comprises a Multi-dimension Interactive Information Mining (MIIM) module and an Auxiliary-Information-based Contrastive Learning (AICL) approach. Empowered by the proposed Global Region Interaction (GRI), MIIM comprehensively mines non-local spatial and channel information through intra-dimension interaction. Moreover, Thanks to the low computational complexity design, separate MIIM can be positioned in shallow layers, enabling the network to better mine specific-modality multi-dimension information. AICL, by introducing the novel Cross-Modality Key-Instance Contrastive (CMKIC) loss, effectively guides the network in extracting modality-invariant information. We conduct extensive experiments not only on the well-known SYSU-MM01 and RegDB datasets but also on the latest large-scale cross-modality LLCM dataset. The results demonstrate WRIM-Net's superiority over state-of-the-art methods.

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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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