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Papers/Learning Token-based Representation for Image Retrieval

Learning Token-based Representation for Image Retrieval

Hui Wu, Min Wang, Wengang Zhou, Yang Hu, Houqiang Li

2021-12-12RetrievalImage Retrieval
PaperPDFCode(official)

Abstract

In image retrieval, deep local features learned in a data-driven manner have been demonstrated effective to improve retrieval performance. To realize efficient retrieval on large image database, some approaches quantize deep local features with a large codebook and match images with aggregated match kernel. However, the complexity of these approaches is non-trivial with large memory footprint, which limits their capability to jointly perform feature learning and aggregation. To generate compact global representations while maintaining regional matching capability, we propose a unified framework to jointly learn local feature representation and aggregation. In our framework, we first extract deep local features using CNNs. Then, we design a tokenizer module to aggregate them into a few visual tokens, each corresponding to a specific visual pattern. This helps to remove background noise, and capture more discriminative regions in the image. Next, a refinement block is introduced to enhance the visual tokens with self-attention and cross-attention. Finally, different visual tokens are concatenated to generate a compact global representation. The whole framework is trained end-to-end with image-level labels. Extensive experiments are conducted to evaluate our approach, which outperforms the state-of-the-art methods on the Revisited Oxford and Paris datasets.

Results

TaskDatasetMetricValueModel
Image RetrievalROxford (Medium)mAP82.28Token
Image RetrievalRParis (Medium)mAP89.34Token
Image RetrievalRParis (Hard)mAP78.56Token
Image RetrievalROxford (Hard)mAP66.57Token

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