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Cross-View Image Set Geo-Localization

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arxiv 2412.18852 v1 pith:IJHFG6B3 submitted 2024-12-25 cs.CV

classification cs.CV
keywords imageimagesgeo-localizationcross-viewflexgeoperspectivessetvl-480kdiverse
verification ladder T0 review T1 audit T2 compute T3 formal
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Cross-view geo-localization (CVGL) has been widely applied in fields such as robotic navigation and augmented reality. Existing approaches primarily use single images or fixed-view image sequences as queries, which limits perspective diversity. In contrast, when humans determine their location visually, they typically move around to gather multiple perspectives. This behavior suggests that integrating diverse visual cues can improve geo-localization reliability. Therefore, we propose a novel task: Cross-View Image Set Geo-Localization (Set-CVGL), which gathers multiple images with diverse perspectives as a query set for localization. To support this task, we introduce SetVL-480K, a benchmark comprising 480,000 ground images captured worldwide and their corresponding satellite images, with each satellite image corresponds to an average of 40 ground images from varied perspectives and locations. Furthermore, we propose FlexGeo, a flexible method designed for Set-CVGL that can also adapt to single-image and image-sequence inputs. FlexGeo includes two key modules: the Similarity-guided Feature Fuser (SFF), which adaptively fuses image features without prior content dependency, and the Individual-level Attributes Learner (IAL), leveraging geo-attributes of each image for comprehensive scene perception. FlexGeo consistently outperforms existing methods on SetVL-480K and two public datasets, SeqGeo and KITTI-CVL, achieving a localization accuracy improvement of over 22% on SetVL-480K.

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  1. Cross-View Localization via Redundant Sliced Observations and A-Contrario Validation

    cs.CV 2025-08 conditional novelty 6.0 of 10

    Slice-Loc divides panoramic query images into slices, estimates each slice's 3-DoF pose, and uses an a-contrario false-alarm model to reject unreliable localizations, cutting DReSS cross-area mean error from 4.47 m to 1.86 m.

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