Özet
LPI radars aim to both perform their own functions and not be detected by their targets by transmitting at low power. For this purpose, they usually perform frequency modulation (linear incremental, triangular, frequency shift keying, etc.) within the signal. Due to the development of cognitive electronic warfare systems, it is essential to characterize the behavior of these radars automatically. We propose three different deep learning models to solve the less studied automatic parameter estimation problem compared to the LPI radar frequency modulation classification problem, which has been extensively researched in the literature. We designed these models as convolutional, recursive, and hybrid to predict frequency jump points and frequency values in the signal. In the numerical analysis, we evaluated the network performances in terms of correct detection, false alarm, and mean square error metrics. As a result, we saw that the hybrid model, which uses convolutional and recursive networks together, achieved the highest performance and we determined that the main contribution to this success came from the convolutional network.
| Tercüme edilen katkı başlığı | Deep Learning Based Parameter Estimation of Frequency Shift Keying LPI Radars |
|---|---|
| Orijinal dil | Türkçe |
| Ana bilgisayar yayını başlığı | 31st IEEE Conference on Signal Processing and Communications Applications, SIU 2023 |
| Yayınlayan | Institute of Electrical and Electronics Engineers Inc. |
| ISBN (Elektronik) | 9798350343557 |
| DOI'lar | |
| Yayın durumu | Yayınlandı - 2023 |
| Etkinlik | 31st IEEE Conference on Signal Processing and Communications Applications, SIU 2023 - Istanbul, Türkiye Süre: 5 Tem 2023 → 8 Tem 2023 |
Yayın serisi
| Adı | 31st IEEE Conference on Signal Processing and Communications Applications, SIU 2023 |
|---|
???event.eventtypes.event.conference???
| ???event.eventtypes.event.conference??? | 31st IEEE Conference on Signal Processing and Communications Applications, SIU 2023 |
|---|---|
| Ülke/Bölge | Türkiye |
| Şehir | Istanbul |
| Periyot | 5/07/23 → 8/07/23 |
Bibliyografik not
Publisher Copyright:© 2023 IEEE.
Keywords
- FMCW
- LPI radars
- deep learning
- frequency jump
Parmak izi
Frekans Kaydirma Anahtarlamali LPI Radarlarda Derin Öǧrenme Tabanli Parametre Kestirimi' araştırma başlıklarına git. Birlikte benzersiz bir parmak izi oluştururlar.Alıntı Yap
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver