Modern FDA-LFM Radar System and Efficient Range-Angle- Doppler Processing Algorithm

Citations

WEB OF SCIENCE

3
Citations

SCOPUS

0

초록

A radar system is proposed that combines frequency diverse array (FDA) and linear frequency modulation (LFM) signals to provide efficient and high-range resolution characteristics. The combined signal could be generated by using a multichannel direct digital synthesizer. Previous studies of the FDA-LFM system based on the delay line are reviewed. Some errors in the signal expressions are corrected and the associated characteristics are revised. For the proposed FDA-LFM radar system, the signal formulations and the signal processing algorithm for range, angle, and Doppler are detailed. The range-time information can initially be extracted by applying the short-time Fourier transform to the time-domain data. Additionally, the target angle is extracted from the obtained range-time data through the coordinate transformation. The Doppler information is then extracted by applying the fast Fourier transform to the successive range-angle data. Numerical simulations are performed and the obtained results fully validate the proposed FDA-LFM radar configuration and the systematic and efficient signal processing algorithm. Further Monte Carlo simulations are performed to analyze the estimation accuracy of the proposed radar system. © 1965-2011 IEEE.

키워드

Beat frequencycoordinate transformdirect digital synthesizerDDSdoppler processingfrequency diverse arrayFDAlinear frequency modulationLFMrange-angle processingshort-time fourier transformSTFT
제목
Modern FDA-LFM Radar System and Efficient Range-Angle- Doppler Processing Algorithm
저자
Kim, Geon UKim, Jeong Phill
DOI
10.1109/TAES.2024.3492167
발행일
2025-04
유형
Article
저널명
IEEE Transactions on Aerospace and Electronic Systems
61
2
페이지
3577 ~ 3588