Low sidelobe robust imaging in random frequency-hopping wideband radar based on compressed sensing

被引:0
作者
Zhen Liu
Xi-zhang Wei
Xiang Li
机构
[1] National University of Defense Technology,School of Electronic Science and Engineering
来源
Journal of Central South University | 2013年 / 20卷
关键词
random frequency-hopping radar; high resolution range profile; sidelobe suppression; motion compensation; compressed sensing;
D O I
暂无
中图分类号
学科分类号
摘要
High resolution range imaging with correlation processing suffers from high sidelobe pedestal in random frequency-hopping wideband radar. After the factors which affect the sidelobe pedestal being analyzed, a compressed sensing based algorithm for high resolution range imaging and a new minimized l1-norm criterion for motion compensation are proposed. The random hopping of the transmitted carrier frequency is converted to restricted isometry property of the observing matrix. Then practical problems of imaging model solution and signal parameter design are resolved. Due to the particularity of the proposed algorithm, two new indicators of range profile, i.e., average signal to sidelobe ratio and local similarity, are defined. The chamber measured data are adopted to testify the validity of the proposed algorithm, and simulations are performed to analyze the precision of velocity measurement as well as the performance of motion compensation. The simulation results show that the proposed algorithm has such advantages as high precision velocity measurement, low sidelobe and short period imaging, which ensure robust imaging for moving targets when signal-to-noise ratio is above 10 dB.
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页码:702 / 714
页数:12
相关论文
共 44 条
  • [1] Liu Z(2000)Estimation of target motion parameter in a stepped-frequency pulses radar [J] Acta Electronica Sinica 28 43-45
  • [2] Zhang S Z(2010)Research on velocity measurement of wideband Costas-coded stepped-frequency radar signal [J] Acta Electronica Sinica 38 2426-2429
  • [3] Wei X Z(2009)Orthogonal frequency-division multiplexing radar signal design with optimised ambiguity function and low peak-to-average power ratio [J] IET Radar, Sonar and Navigation 3 122-132
  • [4] Liu Z(2010)Adaptive design of OFDM radar signal with improved wideband ambiguity function [J] IEEE Transactions on Signal Processing 58 928-933
  • [5] Deng B(2007)Analysis of random step frequency radar and comparison with experiments [J] IEEE Transactions on Geoscience and Remote Sensing 45 890-904
  • [6] Li X(1989)ESPRIT-Estimation of signal parameters via rotational invariance techniques [J] IEEE Transactions on Acoustics, Speech and Signal Processing 37 984-995
  • [7] Sebt M A(2008)An introduction to compressive sampling [J] IEEE Signal Processing Magazine 25 21-30
  • [8] Sheikhi A(2010)On compressive sensing applied to radar [J] Signal Processing 90 1402-1414
  • [9] Nayebi M M(2010)Sparsity and compressed sensing in radar imaging [J] Proceedings of the IEEE 98 1006-1020
  • [10] Sen S(2009)High-resolution radar via compressed sensing [J] IEEE Transactions on Signal Processing 57 2275-2284