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Multigrained Angle Representation for Remote-Sensing Object Detection
DOI:10.1109/TGRS.2022.3212592.png)
摘要
En 中文
Arbitrary-oriented object detection (AOOD) plays a significant role in image understanding in remote-sensing scenarios. The existing AOOD methods face the challenges of ambiguity and high costs in angle representation. To this end, a multigrained angle representation (MGAR) method, consisting of coarse-grained angle classification (CAC) and fine-grained angle regression (FAR), is proposed. Specifically, the designed CAC avoids the ambiguity of angle prediction by discrete angular encoding (DAE) and reduces complexity by coarsening the granularity of DAE. Based on CAC, FAR is developed to refine the angle prediction with much lower costs than narrowing the granularity of DAE. Furthermore, an Intersection over Union (IoU)-aware FAR-Loss (IFL) is designed to improve the accuracy of angle prediction using an adaptive reweighting mechanism guided by IoU. Extensive experiments are performed on several public remote-sensing datasets, which demonstrate the effectiveness of the proposed MGAR. Moreover, experiments on embedded devices demonstrate that the proposed MGAR is also friendly for lightweight deployments.
Keyword:
Object detection
Remote sensing
Encoding
Proposals
Convolutional neural networks
Adaptation models
Task analysis
Angle representation
arbitrary-oriented object detection (AOOD)
lightweight model
remote-sensing image
期刊
IF:
8.6
论文数:
2.1W
被引数:
10.7W
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