Intra-pulse modulation radar signal recognition based on Squeeze-and-Excitation networks

Author:

Wei Shunjun,Qu Qizhe,Su Hao,Shi Jun,Zeng Xiangfeng,Hao Xiaojun

Funder

CEMEE Laboratory-Funded Project

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering,Signal Processing

Reference25 articles.

1. Li, Z.: A review of several foreign radar reconnaissance equipment. Shipboard Electr. Countermeasure 4, 5–10 (1999)

2. Wu, Z., Wang, Y., Cai, Y.: Tactical operation for electronic warfare reconnaissance in complex electromagnetic environment. Electr. Inf. Warf. Technol. 28(4), 28–29 (2013)

3. Yang, L. B. , S. S. Zhang , B. Xiao: Radar emitter signal recognition based on time-frequency analysis. In: IET International Radar Conference 2013. IET, Xi’an (2013). https://doi.org/10.1049/cp.2013.0335

4. Yan, M., Wang, L.: Weighted Kalman filter phase unwrapping algorithm based on inSAR image. Eng. Rev. 3, 227–231 (2013)

5. Ma, F., Zhang, X.: Wideband DOA estimation based on focusing signal subspace. SIViP 13(4), 675–682 (2019)

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