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Multi-level refinement feature pyramid network for scale imbalance object detection

Aziz, Lubna and Salam, Md. Sah and Sheikh, Usman Ullah and Khan, Surat and Ayub, Huma and Ayub, Sara (2021) Multi-level refinement feature pyramid network for scale imbalance object detection. IEEE Access, 9 . pp. 156492-156506. ISSN 2169-3536

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Official URL: http://dx.doi.org/10.1109/ACCESS.2021.3130129

Abstract

Object detection becomes a challenge due to diversity of object scales. In general, modern object detectors use feature pyramid to learn multi-scale representation for better results. However, current versions of feature pyramid are insufficient to handle scale imbalance, as it is inefficient to integrate semantic information across different scales. Here, we reformulate feature pyramid construction as a feature reconfiguration process. We propose a detection network, Multi-level Refinement Feature pyramid Network, to combine high-level features (i.e., semantic information), middle-level feature and low-level feature (i.e., boundary information), in a highly-nonlinear yet efficient manner. A novel contextual features module is proposed, which consists of global attention and local reconfigurations. It efficiently gathers task-oriented contextual features across different scales and spatial locations (i.e., lightweight local reconfiguration and global attention). To evaluate significance of proposed model, we designed and trained end-to-end single stage detector called MRFDet by assimilating it into Single Shot Detector (SSD), and it achieved better detection performance compared to most recent single-stage objects detectors. MRFDet achieves an AP of 45.2 with MS-COCO and an improvement in $mAP$ of 4.5% with VOC.

Item Type:Article
Uncontrolled Keywords:convolutional neural network, feature pyramid, object detection
Subjects:Q Science > QA Mathematics > QA75 Electronic computers. Computer science
Divisions:Computing
ID Code:95703
Deposited By: Yanti Mohd Shah
Deposited On:31 May 2022 13:06
Last Modified:31 May 2022 13:06

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