Title :
Signal coherent processing methods of MIMO radar based on RFT
Author :
Jin Zhen ; Wen Shu-liang ; Xiao Xian-jie
Author_Institution :
Beijing Inst. of Radio Meas., Beijing, China
Abstract :
For Multiple-input Multiple-output (MIMO) tracking radar with long-range detection, when there is no range ambiguity, the pulse repetition period is longer, the time-bandwidth product of emission signals is larger, and the SNR of echo is very low. Through coherent processing of MIMO radar received signals, the target detection performance and recognition performance can be improved. This paper described the coherent processing method of MIMO radar. Different form phased array radar, MIMO radar will have the problem of coupling of range, angle and Doppler. The paper introduced the MIMO radar coherent integration based on Radon-Fourier Transform (RFT). The coherent processing was made on received signals by multi-dimensional search, and the parameter estimation was completed at the same time. Utilizing the characteristics of frequency diversity, high resolution was achieved through using Inverse Discrete Fourier Transform (IDFT). Simulation results indicate that this method is effective to improve the measurement accuracy in low SNR.
Keywords :
MIMO radar; Radon transforms; discrete Fourier transforms; inverse transforms; object detection; parameter estimation; radar signal processing; Doppler coupling problem; IDFT; MIMO radar coherent integration; MIMO radar received signal processing; RFT; Radon-Fourier transform; angle coupling problem; emission signals; frequency diversity; inverse discrete Fourier transform; multiple-input multiple-output tracking radar; parameter estimation; pulse repetition period; range coupling problem; signal coherent processing methods; stepped frequency chirp; target detection performance; target recognition performance; time-bandwidth product; Coherent integration; Multiple-input Multiple-output(MIMO) radar; Radon-Fourier Transform(RFT); Stepped frequency chirp;
Conference_Titel :
Radar Conference 2013, IET International
Conference_Location :
Xi´an
Electronic_ISBN :
978-1-84919-603-1
DOI :
10.1049/cp.2013.0271