首页|A frequency domain estimation and compensation method for system synchronization parameters of distributed-HFSWR

A frequency domain estimation and compensation method for system synchronization parameters of distributed-HFSWR

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To analyze the influence of time synchronization error,phase synchronization error,frequency synchronization error,internal delay of the transceiver system,and range error and angle error between the unit radars on the target detection per-formance,firstly,a spatial detection model of distributed high-frequency surface wave radar(distributed-HFSWR)is estab-lished in this paper.In this model,a method for accurate extrac-tion of direct wave spectrum based on curve fitting is proposed to obtain accurate system internal delay and frequency synchro-nization error under complex electromagnetic environment back-ground and low signal to noise ratio(SNR),and to compensate for the shift of range and Doppler frequency caused by time-fre-quency synchronization error.The direct wave component is extracted from the spectrum,the range estimation error and Doppler estimation error are reduced by the method of curve fit-ting,and the fitting accuracy of the parameters is improved.Then,the influence of frequency synchronization error on target range and radial Doppler velocity is quantitatively analyzed.The relationship between frequency synchronization error and radial Doppler velocity shift and range shift is given.Finally,the sys-tem synchronization parameters of the trial distributed-HFSWR are obtained by the proposed spectrum extraction method based on curve fitting,the experimental data is compensated to correct the shift of the target,and finally the correct target parameter information is obtained.Simulations and experimen-tal results demonstrate the superiority and correctness of the proposed method,theoretical derivation and detection model proposed in this paper.

distributed high-frequency surface wave radar(dis-tributed-HFSWR)direct wavesynchronization errorcurve fit-tingsystem synchronization parameter compensation

WANG Hongyong、SUO Ying、DENG Weibo、WU Xiaochuan、BAI Yang、ZHANG Xin

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School of Electronics and Information Engineering,Harbin Institute of Technology,Harbin 150001,China

Key Laboratory of Marine Environmental Monitoring and Information Processing,Ministry of Industry and Information Technology,Harbin 150001,China

National Natural Science Foundation of China

61701140

2024

系统工程与电子技术(英文版)
中国航天科工防御技术研究院 中国宇航学会 中国系统工程学会 中国系统仿真学会

系统工程与电子技术(英文版)

CSTPCD
影响因子:0.64
ISSN:1004-4132
年,卷(期):2024.35(5)