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Attentional feature pyramid network for small object detection

Authors
Min, KyungseoLee, Gun-HeeLee, Seong-Whan
Issue Date
11월-2022
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Keywords
Object detection; Small object detection; Feature pyramid network; Attention mechanism
Citation
NEURAL NETWORKS, v.155, pp.439 - 450
Indexed
SCIE
SCOPUS
Journal Title
NEURAL NETWORKS
Volume
155
Start Page
439
End Page
450
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/146516
DOI
10.1016/j.neunet.2022.08.029
ISSN
0893-6080
Abstract
Recent state-of-the-art detectors generally exploit the Feature Pyramid Networks (FPN) due to its advantage of detecting objects at different scales. Despite significant advances in object detection owing to the design of feature pyramids, it is still challenging to detect small objects with low resolution and dense distribution in complex scenes. To address these problems, we propose Atten-tional Feature Pyramid Network, a new feature pyramid architecture named AFPN which consists of three components to enhance the small object detection ability, specifically: Dynamic Texture Attention, Foreground-Aware Co-Attention, and Detail Context Attention. First, Dynamic Texture Attention augments the texture features dynamically by filtering out redundant semantics to highlight small objects in lower layers and amplifying credible details to emphasize large objects in higher layers. Then, Foreground-Aware Co-Attention is explored to detect densely arranged small objects by enhancing the objects feature via foreground-correlated contexts and suppressing the background noise. Finally, to better capture the features of small objects, Detail Context Attention adaptively aggregates detail cues of RoI features with different scales for a more accurate feature representation. By substituting FPN with AFPN in Faster R-CNN, our method performs on par with the state-of-the-art performance on Tsinghua-Tencent 100K. Furthermore, we achieve highly competitive results on small category of both PASCAL VOC and MS COCO. (c) 2022 Elsevier Ltd. All rights reserved.
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