ICASSP 2024accepted0 citations

Mainlobe Deceptive Jammer Suppression Using FDA-MIMO Radar in the Presence of Multipath Propagation

Yitao Zhang, Lan Lan, Guisheng Liao, Shengqi Zhu, Jingwei Xu, Hing Cheung So

Abstract

This paper aims to suppress mainlobe deceptive jammers considering the multipath effect in a frequency diverse array-multiple-input multiple-output (FDA-MIMO) radar. At the problem formulation stage, the overall received signal including the true target, main-lobe deceptive jammers, and burst jamming signal in the presence of multipath propagation, is represented as a "low-rank + low-rank + sparse" decomposition model. Then, an improved Go Decomposition (GoDec) algorithm is developed to recover the components corresponding to the target signal and disturbance (including the mainlobe jammers and burst jamming signal). Furthermore, a data-dependent beamforming approach is implemented to eliminate the mainlobe deceptive jammers, where the covariance matrix is constructed using the recovered disturbance components, and the steering vector is obtained with a priori knowledge of the target position. Numerical results are provided to demonstrate the effectiveness of the devised technique and its superiority over competing methods in suppressing mainlobe deceptive jammers under multipath environments.

BibTeX
@inproceedings{icassp2024_mainlobedeceptiv,
  title = {Mainlobe Deceptive Jammer Suppression Using FDA-MIMO Radar in the Presence of Multipath Propagation},
  author = {Yitao Zhang and Lan Lan and Guisheng Liao and Shengqi Zhu and Jingwei Xu and Hing Cheung So},
  booktitle = {ICASSP 2024},
  year = {2024}
}