Visible to the public "Anti-jamming target detection of pulsed-type radars in QuadCS domain"Conflict Detection Enabled

Title"Anti-jamming target detection of pulsed-type radars in QuadCS domain"
Publication TypeConference Paper
Year of Publication2015
AuthorsC. Liu, F. Xi, S. Chen, Z. Liu
Conference Name2015 IEEE International Conference on Digital Signal Processing (DSP)
Date PublishedJuly
PublisherIEEE
ISBN Number978-1-4799-8058-1
Accession Number15438623
KeywordsBandwidth, compressed sensing, CS recovery algorithms, Deceptive electronic-counter measures, digital radio frequency memory repeat jammers, DRFM repeat jammers, echo, Electronic countermeasures, inphase components, jammer leakage, jamming, object detection, pubcrawl170104, pulsed-type radars, QuadCS, quadrature components, quadrature compressive sampling, quadrature sampling, Radar countermeasures, radar detection, radar echoes, radiofrequency signals, Signal to noise ratio, sub-Nyquist sampling, target detection scheme
Abstract

Quadrature compressive sampling (QuadCS) is a newly introduced sub-Nyquist sampling for acquiring inphase and quadrature components of radio-frequency signals. This paper develops a target detection scheme of pulsed-type radars in the presence of digital radio frequency memory (DRFM) repeat jammers with the radar echoes sampled by the QuadCS system. For diversifying pulses, the proposed scheme first separates the target echoes from the DRFM repeat jammers using CS recovery algorithms, and then removes the jammers to perform the target detection. Because of the separation processing, the jammer leakage through range sidelobe variation of the classical match-filter processing will not appear. Simulation results confirm our findings. The proposed scheme with the data at one eighth the Nyquist rate outperforms the classic processing with Nyquist samples in the presence of DRFM repeat jammers.

URLhttps://ieeexplore.ieee.org/document/7251833
DOI10.1109/ICDSP.2015.7251833
Citation Key7251833