Parameter estimation of polyphase coded radar signal based on FRFT

Author:

Dong Jinpeng1,Chen Shiwen1,Sun Gangyin1,Wu Chaopeng1

Affiliation:

1. PLA Information Engineering University

Abstract

Abstract Due to the complex intra-pulse modulation of polyphase code signals, most research on intra-pulse parameter estimation algorithms has focused on utilizing techniques such as the Wigner Hough transform (WHT), Radon Wigner transform (RAT), and other methods. In this paper, we studied the fractional Fourier transform (FRFT) normalized spectrum of polyphase coded signals and derived a mathematical model to prove the impulse characteristic of the polyphase coded spectrum under optimum order. This is the theoretical basis for the fourth-order origin moment as the objective function, and an algorithm based on FRFT is proposed to estimate the intra-pulse parameters of polyphase coded signals. Through simulation experiments, it was shown that the algorithm has a good parameter estimation effect and low computational time, making it suitable for engineering practice. Furthermore, considering the difficulty in obtaining prior information on parameters in non-cooperative environments, which leads to the inapplicability of evaluation standard such as mean square error (MSE), we proposed an evaluation standard for parameter estimation based on a posteriori models. Through simulation experiments, this standard was proven to be as persuasive as MSE.

Publisher

Research Square Platform LLC

Reference27 articles.

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3. Automatic Recognition of General Lpi Radar Waveform Using Ssd and Supplementary Classifier;Hoang Linh Manh;IEEE Transactions on Signal Processing,2019

4. Jincheng Yang, Shiwen Chen, Jinpeng Dong & Xiao Han. (2023). A Fast Wigner Hough Transform Algorithm for Parameter Estimation of Low Probability of Intercept Radar Polyphase Coded Signals. IET Signal Processing, 17(5). http://dx.doi.org/10.1049/sil2.12224. 10.1049/sil2.12224.

5. Detection of Polyphase Pulse Compression Waveforms Using the Radon-ambiguity Transform;Jennison BK;IEEE Transactions on Aerospace & Electronic Systems,2003

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