Specific Emitter Identification Based on Synchrosqueezing Transform for Civil Radar
specific emitter identification
0202 electrical engineering, electronic engineering, information engineering
synchrosqueezing transform
02 engineering and technology
time-frequency analysis
linear relevance propagation
DOI:
10.3390/electronics9040658
Publication Date:
2020-04-16T17:01:39Z
AUTHORS (6)
ABSTRACT
Time-frequency (TF) signal features are widely used in specific emitter identification (SEI) which commonly arises in many applications, especially for radar signals. Due to data scale and algorithm complexity, it is difficult to obtain an informative representation for SEI with existing TF features. In this paper, a feature extraction method is proposed based on synchrosqueezing transform (SST). The SST feature has an equivalent dimension to Fourier transform, and retains the most relevant information of the signal, leading to on average approximately 20 percent improvement in SEI for complex frequency modulation signals compared with existing handcrafted features. Numerous results demonstrate that the synchrosqueezing TF feature can offer a better recognition accuracy, especially for the signals with intricate time-varying information. Moreover, a linear relevance propagation algorithm is employed to attest to the SST feature importance from the perspective of deep learning.
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