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Improved Mainlobe Interference Suppression Based on Blocking Matrix Preprocess

机译:基于分块矩阵预处理的改进主瓣干扰抑制

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摘要

For the problem of mainlobe direction shifting that is caused by the mainlobe interference suppression based on blocking matrix preprocess, an effective method is proposed which is based on the combination of diagonal loading and linear constraints. Therein, the reason for mainlobe direction shifting is analyzed and found to be that the covariance matrix mismatch exists in the realization of the adaptive beamforming. Therefore, the diagonal loading processing is used to overcome the mismatch and correct the mainlobe direction shifting, and the linear constraints are used to make sure of the beam pattern nulling in the interference directions; then the desired performance of adaptive beamforming is obtained. Simulation results attest the correctness and effectiveness of the proposed method, and they also show that the proposed method is insensitive to the selection of diagonal loading level, which means the loading factor is easy to choose.
机译:针对基于块矩阵预处理的主瓣干扰抑制引起的主瓣方向偏移问题,提出了一种基于对角线加载和线性约束相结合的有效方法。在此,分析了主瓣方向偏移的原因,并发现在自适应波束形成的实现中存在协方差矩阵不匹配。因此,使用对角线加载处理来克服不匹配并校正主波瓣方向偏移,并且使用线性约束来确保波束方向图在干涉方向上为零。然后获得所需的自适应波束成形性能。仿真结果证明了该方法的正确性和有效性,并且表明该方法对对角线荷载水平的选择不敏感,意味着荷载系数易于选择。

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