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Attentional Local Contrast Networks for Infrared Small Target Detection

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To mitigate the issue of minimal intrinsic features for pure data-driven methods, in this paper, we propose a novel model-driven deep network for infrared small target detection, which combines discriminative networks and conventional model-driven methods to make use of both labeled data and the domain knowledge. By designing a feature map cyclic shift scheme, we modularize a conventional local contrast measure method as a depth-wise parameterless nonlinear feature refinement layer in an end-to-end network, which encodes relatively long-range contextual interactions with clear physical interpretability. To highlight and preserve the small target features, we also exploit a bottom-up attentional modulation integrating the smaller scale subtle details of low-level features into high-level features of deeper layers. We conduct detailed ablation studies with varying network depths to empirically verify the effectiveness and efficiency of the design of each component in our network architecture. We also compare the performance of our network against other model-driven methods and deep networks on the open SIRST dataset as well. The results suggest that our network yields a performance boost over its competitors. Our code, trained models, and results are available online.

Yimian Dai, Yiquan Wu, Fei Zhou, Kobus Barnard• 2020

Related benchmarks

TaskDatasetResultRank
Infrared Small Target DetectionNUAA-SIRST
IoU74.31
37
Infrared Small Target DetectionNUDT-MIRSDT (test)
mIoU32.26
25
Infrared Small Target DetectionIRSatVideo-LEO (test)
mIoU31.36
25
Infrared Small Target DetectionNUDT-MIRSDT HiNo
Pd36.09
24
Infrared Small Target DetectionNUDT-MIRSDT
Probability of Detection (Pd)52.57
24
Infrared Small Target DetectionNUDT-MIRSDT SNR ≤ 3
Pd3.97
24
Infrared Small Target DetectionIRDST simulation
Pd75.06
15
Infrared Small Target DetectionSIRSTD-Pixel
AUC87.75
14
Infrared Small Target DetectionNUAA-SIRST (test)
Precision84.8
11
Infrared Small Target DetectionSIRST-UAVB 2400:600
Precision95.06
10
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