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Papers/Compact Network Training for Person ReID

Compact Network Training for Person ReID

Hussam Lawen, Avi Ben-Cohen, Matan Protter, Itamar Friedman, Lihi Zelnik-Manor

2019-10-15Multi-Object TrackingPerson Re-Identification
PaperPDF

Abstract

The task of person re-identification (ReID) has attracted growing attention in recent years leading to improved performance, albeit with little focus on real-world applications. Most SotA methods are based on heavy pre-trained models, e.g. ResNet50 (~25M parameters), which makes them less practical and more tedious to explore architecture modifications. In this study, we focus on a small-sized randomly initialized model that enables us to easily introduce architecture and training modifications suitable for person ReID. The outcomes of our study are a compact network and a fitting training regime. We show the robustness of the network by outperforming the SotA on both Market1501 and DukeMTMC. Furthermore, we show the representation power of our ReID network via SotA results on a different task of multi-object tracking.

Results

TaskDatasetMetricValueModel
Person Re-IdentificationMarket-1501Rank-196.2Compact-ReID (6.4M w/o RK)
Person Re-IdentificationMarket-1501mAP89.7Compact-ReID (6.4M w/o RK)
Person Re-IdentificationMarket-1501Rank-196.2Compact-ReID
Person Re-IdentificationMarket-1501Rank-195.8Compact-ReID (2.9M w/o RK)
Person Re-IdentificationMarket-1501mAP88.7Compact-ReID (2.9M w/o RK)
Person Re-IdentificationDukeMTMC-reIDRank-189.8Compact-ReID (6.4M w/o RK)
Person Re-IdentificationDukeMTMC-reIDmAP80.3Compact-ReID (6.4M w/o RK)
Person Re-IdentificationDukeMTMC-reIDRank-188.8Compact-ReID (2.9M w/o RK)
Person Re-IdentificationDukeMTMC-reIDmAP78.9Compact-ReID (2.9M w/o RK)

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