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Robust Adaptive Beamforming for Distributed Radar Based on Covariance Matrix Reconstruction and Steering Vector Estimation

机译:基于协方差矩阵重构和转向矢量估计的分布式雷达鲁棒自适应波束形成

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Due to the high dynamic characteristics of the airborne distributed radar, array errors cannot be avoided, thus the performance of the conventional adaptive beamforming methods will deteriorate severely. In order to solve this problem, a robust adaptive beamforming method based on covariance matrix reconstruction and steering Vector estimation is proposed for the airborne distributed radar. In the proposed method, an annulus uncertainty set is used to constrain the interference steering vector, and then the Capon spectrum is integrated on the surface of the region to obtain interference-plus-noise covariance matrix. Afterwards, the iterative robust Capon beamformer is used to obtain a more accurate estimation of the desired signal steering vector. Finally the weight vector is calculated by using the estimated interference-plus-noise covariance matrix and the desired signal steering vector. As the interference-plus-noise covariance matrix is well reconstructed by the annulus uncertainty set and the signal steering vector is calibrated, the proposed method is both robust to array structure errors and signal angle errors compared with the existing methods. The robustness and effectiveness of the proposed algorithm are verified by simulations.
机译:由于机载分布式雷达的高动态特性,无法避免阵列误差,因此传统的自适应波束形成方法的性能将严重恶化。为了解决这个问题,提出了一种基于协方差矩阵重构和转向矢量估计的鲁棒自适应波束形成方法。提出的方法是利用环的不确定性集约束干扰控制向量,然后将Capon谱图积分到该区域的表面上,得到干扰加噪声协方差矩阵。然后,使用迭代鲁棒的Capon波束形成器来获得所需信号控制矢量的更准确估计。最后,通过使用估计的干扰加噪声协方差矩阵和所需的信号导引矢量来计算权重矢量。由于通过环的不确定性集很好地重构了干扰加噪声协方差矩阵,并校准了信号导引矢量,因此与现有方法相比,该方法对阵列结构误差和信号角度误差均具有鲁棒性。仿真结果验证了所提算法的鲁棒性和有效性。

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