• Electronics Optics & Control
  • Vol. 29, Issue 9, 32 (2022)
ZOU Bo, WANG Xin, FENG Weike, ZHU Hangui, and LI Yao
Author Affiliations
  • [in Chinese]
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    DOI: 10.3969/j.issn.1671-637x.2022.09.007 Cite this Article
    ZOU Bo, WANG Xin, FENG Weike, ZHU Hangui, LI Yao. Nonlinear Regression Based Clutter Reconstruction STAP Method[J]. Electronics Optics & Control, 2022, 29(9): 32 Copy Citation Text show less
    References

    [1] GUERCI J R.Space-time adaptive processing for radar[M].BostonMA: Artech House2014.

    [2] REED I SMALLETT J DBRENNAN L E.Rapid convergence rate in adaptive arrays[J].IEEE Transactions on Aerospace and Electronic Systems197410(6):853-863.

    [3] MELVIN W L.A STAP overview[J].IEEE Aerospace and Electronic Systems Magazine200419(1):19-35.

    [4] CORBELL P MPEREZ J JRANGASWAMY M.Enhancing GMTI performance in non-stationary clutter using 3D STAP[C]//IEEE National Radar Conference.Waltham MA: IEEE2007:647-652.

    [5] WANG Y LCHEN J WBAO Zet al.Robust space-time adaptive processing for airborne radar in nonhomogeneous clutter environments[J].IEEE Transactions on Aerospace and Electronic Systems200339(1):70-81.

    [6] RABIDEAU D JSTEINHARDT A O.Improved adaptive clutter cancellation through data-adaptive training[J].IEEE Transactions on Aerospace and Electronic Systems 199935(3):879-891.

    [7] RANGASWAMY MMICHELS J HHIMED B.Statisticalanalysis of the non-homogeneity detector for STAP applications[J].Digital Signal Processing200414(3):253-267.

    [8] SARKAR T KWANG HPARK Set al.A deterministic least-squares approach to space-time adaptive processing (STAP)[J].IEEE Transactions on Antennas and Propagation200149(1):91-103.

    [9] WICKS M CRANGASWAMY MADVE Ret al.Space-time adaptive processing:a knowledge-based perspective for airborne radar[J].IEEE Signal Processing Magazine200623(1):51-65.

    [10] DONOHO D L.Compressed sensing[J].IEEE Transactions on Information Theory200652(4):1289-1306.

    [11] ZHANG ZXU YYANG Jet al.A survey of sparse re-presentation:algorithms and applications[J].IEEE Access20153:490-530.

    [13] FENG W KGUO Y DZHANG Y Set al.Airborne radar space time adaptive processing based on atomic norm minimization[J].Signal Processing2018148:31-40.

    [15] DUAN K QLIU W JDUAN G Qet al.Off-grid effects mitigation exploiting knowledge of the clutter ridge for sparse recovery STAP[J].IET RadarSonar & Navigation 201812(5):557-564.

    [16] LI Z HZHANG Y SHE X Yet al.Low-complexity off-grid STAP algorithm based on local search clutter subspace estimation[J].IEEE Geoscience and Remote Sensing Letters201815(12):1862-1866.

    [18] YANG Z CDE LAMARE R CLIU W J.Sparsity-based STAP using alternating direction method with gain/phase errors[J].IEEE Transactions on Aerospace and Electronic Systems201753(6):2756-2768.

    [20] YE H DLI Z YLIU Z Tet al.Clutter-ridge matched SR-STAP technique for non-stationary clutter suppression[C]//IEEE Radar Conference (RadarConf20).Florence:IEEE2020.doi:10.1109/RadarConf2043947.2020.9266628.

    ZOU Bo, WANG Xin, FENG Weike, ZHU Hangui, LI Yao. Nonlinear Regression Based Clutter Reconstruction STAP Method[J]. Electronics Optics & Control, 2022, 29(9): 32
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