Few-Shot Specific Emitter Identification via Integrated Complex Variational Mode Decomposition and Spatial Attention Transfer
Authors: Chenyu Zhu, Zeyang Li, Ziyi Xie, Jie Zhang
Organizations: School of Information Science and Technology, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, China · School of Electrical Engineering and Computer Science, and the Digital Futures, KTH Royal Institute of Technology, 114 28 Stockholm, Sweden · Ranplan Wireless Network Design Ltd., Cambridge, CB23 3UY, U.K.
Specific emitter identification (SEI) utilizes passive hardware characteristics to authenticate transmitters, providing a robust physical-layer security solution. However, most deep-learning-based methods rely on extensive data or require prior information, which poses challenges in real-world scenarios with limited labeled data. We propose an integrated complex variational mode decomposition algorithm that decomposes and reconstructs complex-valued signals to approximate the original transmitted signals, thereby enabling more accurate feature extraction. We further utilize a temporal convolutional network to effectively model the sequential signal characteristics, and introduce a spatial attention mechanism to adaptively weight informative signal segments, significantly enhancing identification performance. Additionally, the branch network allows leveraging pre-trained weights from other data while reducing the need for auxiliary datasets. Ablation experiments on the simulated data demonstrate the effectiveness of each component of the model. An accuracy comparison on a public dataset reveals that our method achieves 96% accuracy using only 10 symbols without requiring any prior knowledge.
Figures & tables
Fig. 1: The signal generation and transmission process.
Emitter
Nonlinear order K
Memory depth Q
Model Coefficients bk
Radiation1
5
6
[1,0,0.1126,0,0.2937]
Radiation2
5
6
[1,0,0.2479,0,0.1396]
Radiation3
5
6
[1,0,0.3959,0,0.1948]
Radiation4
5
6
[1,0,0.5027,0,0.2833]
Radiation5
5
6
[1,0,0.1683,0,0.4412]
Radiation6
5
6
[1,0,0.3246,0,0.3463]
TABLE I: The nonlinear parameters of the emitters.
College of Electronic Science and Technology, National University of Defense Technology, Changsha 410073, China. · Department of Electrical and Computer Engineering, The University of Hong Kong