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Multiscale Correlation Networks Based on Deep Learning for Automatic Modulation Classification

delete2023-01-01
delete5
PRE
AI
J
Jing Xiao
王玉峰 (Yufeng Wang)
D
Duona Zhang *
Q
Qinyan Ma
丁文锐 (Wenrui Ding)
DOI:10.1109/LSP.2023.3275912delete
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Abstract

Abstract

En 中文
Automatic Modulation Classification (AMC) is a challenging yet significant technique for communication systems. Deep learning methods, though widely employed for AMC, are challenged by the poor representation in noisy scenarios. In this letter, we propose a novel Multiscale Correlation Networks (MSCNs) approach to enhance noise suppression and bolster representation power for AMC. MSCNs leverage learning correlation wavelet transform to redistribute radio signal and noise features across various scales, and incorporate multiscale correlation and attention mechanisms to characterize feature properties in terms of frequency. Experiments reveal that MSCNs achieve an overall classification rate of 91.36% at 10 dB using 152 k training samples on the public RadioML 2018.01 A benchmark.
Keywords:
Automatic modulation classification
deep learning
multiscale correlation
noise suppression
stationary wavelet transform

Journal

IEEE Signal Processing Magazine cover
IEEE Signal Processing Magazine
IF:
9.6
Papers:
1.1W
Citations:
1.7W

Organization

B
Beihang University
Scholars:
5.2W
Papers: 4.1W
Citations: 37