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Adaptive beamforming algorithms with robustness against steering vector mismatch of signals

机译:具有针对信号转向矢量失配的鲁棒性的自适应波束成形算法

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摘要

Three novel adaptive beamforming algorithms are developed to mitigate the steering vector (SV) random errors of both the desired signal and interferences. With the use of iterative robust Capon beamforming technique, each interference's SV is estimated first, and then the interference-plus-noise covariance matrix is reconstructed according to its definition. To accurately estimate the signal of interest's (SOI's) SV, the authors introduce three new methods, which are based on the techniques of the second-order cone programming, the eigendecomposition and the oracle approximating shrinkage. For the proposed beamformers, only the prior information about the array geometry and the SOI's angular sector are needed. The main advantage is that the proposed methods are robust against a variety of SV mismatches. Simulation results are presented to demonstrate the robustness and effectiveness of the proposed adaptive beamformers.
机译:开发了三种新颖的自适应波束形成算法,以减轻所需信号和干扰的导引向量(SV)随机误差。利用迭代鲁棒的Capon波束成形技术,首先估计每个干扰的SV,然后根据其定义重建干扰加噪声协方差矩阵。为了准确估计感兴趣信号(SOI)的SV,作者介绍了三种新方法,它们基于二阶锥规划,特征分解和预言近似收缩技术。对于建议的波束形成器,仅需要有关阵列几何形状和SOI角扇区的先验信息。主要优点是,所提出的方法对于各种SV不匹配具有鲁棒性。仿真结果表明了所提出的自适应波束形成器的鲁棒性和有效性。

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