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Pyramidal Person Re-IDentification via Multi-Loss Dynamic Training

About

Most existing Re-IDentification (Re-ID) methods are highly dependent on precise bounding boxes that enable images to be aligned with each other. However, due to the challenging practical scenarios, current detection models often produce inaccurate bounding boxes, which inevitably degenerate the performance of existing Re-ID algorithms. In this paper, we propose a novel coarse-to-fine pyramid model to relax the need of bounding boxes, which not only incorporates local and global information, but also integrates the gradual cues between them. The pyramid model is able to match at different scales and then search for the correct image of the same identity, even when the image pairs are not aligned. In addition, in order to learn discriminative identity representation, we explore a dynamic training scheme to seamlessly unify two losses and extract appropriate shared information between them. Experimental results clearly demonstrate that the proposed method achieves the state-of-the-art results on three datasets. Especially, our approach exceeds the current best method by 9.5% on the most challenging CUHK03 dataset.

Feng Zheng, Cheng Deng, Xing Sun, Xinyang Jiang, Xiaowei Guo, Zongqiao Yu, Feiyue Huang, Rongrong Ji• 2018

Related benchmarks

TaskDatasetResultRank
Person Re-IdentificationMarket1501 (test)
Rank-1 Accuracy95.7
1264
Person Re-IdentificationDuke MTMC-reID (test)
Rank-189
1018
Person Re-IdentificationMarket 1501
mAP88.2
999
Person Re-IdentificationDukeMTMC-reID
Rank-1 Acc89
648
Person Re-IdentificationMarket-1501 (test)
Rank-195.7
384
Person Re-IdentificationCUHK03 (Detected)
Rank-1 Accuracy78.9
219
Person Re-IdentificationCUHK03 (Labeled)
Rank-1 Rate78.9
180
Person Re-IdentificationMarket-1501 1.0 (test)
Rank-195.7
131
Person Re-IdentificationDukeMTMC
R1 Accuracy89
120
Person Re-IdentificationMarket-1501 single query
Rank-1 Acc95.7
114
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