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STAP method based on atomic norm minimization with array amplitude-phase error calibration

机译:基于原子常态误差校准的原子规范最小化的STAP方法

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摘要

In this paper, a space-time adaptive processing (STAP) method is proposed for the airborne radar with the array amplitude-phase error considered, which is based on atomic norm minimization (ANM). In the conventional ANM-based STAP method, the influence of the array amplitude-phase error is not considered and restrained, which inevitably causes performance deterioration. To solve this problem, the array amplitude-phase error is firstly estimated. Then, by pre-estimating the array amplitude-phase error information, a modified ANM model is built, in which the array amplitude-phase error factor is separated from the clutter response and the clutter covariance matrix (CCM) to improve the estimation accuracy of the CCM. To prove that the atomic norm theory is applicable in the presence of the array amplitude-phase error, the clutter sparsity is analyzed in this paper. Meanwhile, simulation results demonstrate that the proposed method is superior to the state-of-the-art STAP method. Moreover, the measured data is used to verify the effectiveness of the proposed method.
机译:本文提出了一种时空自适应处理(STAP)方法,用于使用阵列幅度误差考虑的空气雷达,这是基于原子规范最小化(ANM)。在传统的基于ANM的STAP方法中,不考虑和抑制阵列幅度误差的影响,这不可避免地导致性能劣化。为了解决这个问题,首先估计阵列幅度相位误差。然后,通过预先估计阵列幅度误差信息,建立了修改的ANM模型,其中阵列幅度相位误差因子与杂波响应和杂波协方差矩阵(CCM)分离,以提高估计精度CCM。为了证明原子标准理论在存在阵列幅度误差的情况下,本文分析了杂波稀疏性。同时,仿真结果表明,该方法优于最先进的液化方法。此外,测量的数据用于验证所提出的方法的有效性。

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