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Human Semantic Parsing for Person Re-identification

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arxiv 1804.00216 v1 pith:VTKZX6XA submitted 2018-03-31 cs.CV

classification cs.CV
keywords humanpersonre-identificationparsingrank-1semanticstate-of-the-artimprove
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Person re-identification is a challenging task mainly due to factors such as background clutter, pose, illumination and camera point of view variations. These elements hinder the process of extracting robust and discriminative representations, hence preventing different identities from being successfully distinguished. To improve the representation learning, usually, local features from human body parts are extracted. However, the common practice for such a process has been based on bounding box part detection. In this paper, we propose to adopt human semantic parsing which, due to its pixel-level accuracy and capability of modeling arbitrary contours, is naturally a better alternative. Our proposed SPReID integrates human semantic parsing in person re-identification and not only considerably outperforms its counter baseline, but achieves state-of-the-art performance. We also show that by employing a \textit{simple} yet effective training strategy, standard popular deep convolutional architectures such as Inception-V3 and ResNet-152, with no modification, while operating solely on full image, can dramatically outperform current state-of-the-art. Our proposed methods improve state-of-the-art person re-identification on: Market-1501 by ~17% in mAP and ~6% in rank-1, CUHK03 by ~4% in rank-1 and DukeMTMC-reID by ~24% in mAP and ~10% in rank-1.

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  1. Improving analytical color and texture similarity estimation methods for dataset-agnostic person reidentification

    cs.CV 2024-12 reject novelty 3.0 of 10

    Histogram smoothing and a supervised autoencoder for texture slightly improve an analytical, dataset-agnostic person re-identification pipeline on Market1501.

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