一种基于压缩感知的扰动最小元数线性阵列零转向新方法

M. Abdelhay, S. El-Khamy
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引用次数: 0

摘要

本文介绍了一种用于部分自适应阵列中宽零导向的压缩感知方法。该方法通过抵消干扰信号到达的整个旁瓣来施加宽零值。首先将该问题公式化并加以松弛,得到一个凸规划问题。然后采用迭代重加权最小化算法求解松弛问题,以增强最终解的稀疏性。对小型和大型线性阵列中的一宽零点和二宽零点转向进行了仿真。结果表明,该算法能够在少量扰动数组元素的情况下获得所需的空值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new compressed sensing based approach for null steering of linear arrays by perturbing minimum number of elements
In this paper, a compressive sensing approach for wide null steering in partially adaptive arrays is introduced. The proposed method imposes the wide nulls by canceling the whole sidelobes where the interference signals arrive. The problem is first formulated and relaxed to obtain a convex programming problem. The relaxed problem is then solved using iterative re-weighted minimization algorithm to enhance the sparsity in the final solution. Simulations were conducted for one and two wide nulls steering in small and large linear arrays. Results show that the proposed algorithm is capable of steering the required nulls with small number of perturbed array elements.
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