DOE OSTI · 3100031
Contrasting Time-Frequency Representations for Unknown Waveform Detection
Abstract
Identifying unseen electromagnetic waveforms is critical for many applications, like interference management, electronic warfare and spectrum management. Traditionally this is done using statistical methods for anomaly detection, which has evolved to deep learning models for identifying the unseen data, formally termed as open set recognition. Some prior methods use a generative model to emulate open set data, which face challenges in generating synthetic samples for open set while simultaneously selecting an optimal discriminator for accurate classification. To alleviate this issue, we propose a discriminative model that effectively combines time and frequency domain features of communication signals for accurate predictions. We further introduce a cosine similarity loss that makes the domain specific features unique to enhance the prediction rate. Additionally, our model avoids generic feature vectors by extracting class-specific features during training, resulting in improved class representation. The experiment results show that this combined feature approach with cosine loss outperforms single-domain models and improves accuracy by 10% over models without cosine loss.
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Wei, Xue [University of Albany, SUNY], Quach, Anna [Idaho National Laboratory] (ORCID:0009000600111116), Wells, Daniel E. [Idaho National Laboratory], Saha, Dola [University of Albany, SUNY]. 2025-06-12. Contrasting Time-Frequency Representations for Unknown Waveform Detection. https://www.osti.gov/biblio/3100031
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