Sparse LCMV beamformer design for suppression of ground clutter in airborne radar

被引:16
|
作者
Scott, I
Mulgrew, B
机构
[1] Signals and Systems Group, Department of Electrical Engineering, The University of Edinburgh, Edinburgh
基金
英国工程与自然科学研究理事会;
关键词
D O I
10.1109/78.476428
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Cancellation of the ground clutter received at an airborne phased array radar is an inherently two dimensional problem, Clutter returns are Doppler shifted due to platform motion forcing the use of processors that can resolve targets in both velocity (Doppler) and azimuth. Bully adaptive processors that operate in both dimensions require prohibitively large computation so that reduced adaptive dimension, or partially adaptive processors must be considered. In conventional partially adaptive linearly constrained minimum variance (LCMV) beamformer design the approach taken has been to represent the interference subspace with some reduced set of vectors, typically the eigenvectors associated with the largest eigenvalues of the interference covariance matrix, This technique does yield good performance but will not give the optimum performance for a given partially adaptive dimension. In this paper, an off-line method for selecting the ''best'' degrees of freedom to be retained in a partially adaptive design is presented, The sequential algorithm described selects those degrees of freedom that best minimize the beamformer output mean square error, This approach leads to a sparse structure for the transformation matrix, which when implemented in a generalized sidelobe canceller (GSC) structure results in a reduction in the computational load, This approach also allows a reduction in the required adaptive dimension as compared to the eigenvector based approach, Illustrative examples demonstrate the effectiveness of this method.
引用
收藏
页码:2843 / 2851
页数:9
相关论文
共 50 条
  • [1] Airborne Bistatic Radar Clutter Suppression Based on Sparse Bayesian Learning
    Lu Xiaode
    Yang Jingmao
    Yue Qi
    Zhang Hanliang
    [J]. JOURNAL OF ELECTRONICS & INFORMATION TECHNOLOGY, 2018, 40 (11) : 2651 - 2658
  • [2] Suppression of the Ground Clutter in Airborne PCL Radar Using DPCA technique
    Dawidowicz, B.
    Kulpa, K. S.
    Malanowski, M.
    [J]. 2009 EUROPEAN RADAR CONFERENCE (EURAD 2009), 2009, : 306 - 309
  • [3] A Clutter Suppression Algorithm via Enhanced Sparse Bayesian Learning for Airborne Radar
    Wang, Degen
    Wang, Tong
    Cui, Weichen
    Zhang, Xinying
    [J]. IEEE SENSORS JOURNAL, 2023, 23 (10) : 10900 - 10911
  • [4] Sidelobe forming for ground clutter and jammer suppression for airborne active array radar
    Bürger, WK
    [J]. IEEE INTERNATIONAL SYMPOSIUM ON PHASED ARRAY SYSTEMS AND TECHNOLOGY 2003, 2003, : 271 - 276
  • [5] Clutter suppression algorithm based on fast converging sparse Bayesian learning for airborne radar
    Wang, Zetao
    Xie, Wenchong
    Duan, Keqing
    Wang, Yongliang
    [J]. SIGNAL PROCESSING, 2017, 130 : 159 - 168
  • [6] Short-Range Clutter Suppression for Airborne Radar Using Sparse Recovery and Orthogonal Projection
    Chen, Wei
    Xie, Wenchong
    Wang, Yongliang
    [J]. IEEE GEOSCIENCE AND REMOTE SENSING LETTERS, 2022, 19
  • [7] The Ground Clutter Canceller based on the Clutter Recovery in Airborne MIMO Radar
    Zhou, Jian
    Zhou, Yan
    Wang, Lin
    Jiang, Bo
    Wen, Cai
    [J]. PROCEEDINGS OF THE 2017 INTERNATIONAL CONFERENCE ON ELECTRONIC INDUSTRY AND AUTOMATION (EIA 2017), 2017, 145 : 186 - 190
  • [8] Airborne Doppler radar clutter and range sidelobe suppression
    Keeler, RJ
    Cai, HQ
    Lee, WC
    [J]. 31ST CONFERENCE ON RADAR METEOROLOGY, VOLS 1 AND 2, 2003, : 730 - 731
  • [9] Adaptive clutter suppression for ground penetrating radar
    Carhoun, DO
    [J]. DETECTION AND REMEDIATION TECHNOLOGIES FOR MINES AND MINELIKE TARGETS X, PTS 1 AND 2, 2005, 5794 : 1182 - 1191
  • [10] Clutter suppression for airborne radar with cylindrical array antennas
    Xie, Wenchong
    Wang, Yongliang
    [J]. 2007 IEEE AEROSPACE CONFERENCE, VOLS 1-9, 2007, : 2188 - 2193