Transmit-Receive Beampattern Optimization for Polarization-Subarray-Based Frequency Diverse Array Radar

Shiqi Gong, Shaodan Ma, Xing Wei, C. Xing, Guanghua Yang
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Abstract

In this paper, we consider a radar system with a subarray-based frequency diverse array (FDA) as the transmitting array, which consists of two FDA subarrays with different frequency increments to achieve single maximum beam response for any target. In order to distinguish the desired signal and multiple interferences with close spatial directions in most scenarios, a novel polarization sensitive FDA (PSFDA) is proposed as the receiving array to suppress interference and further improve the signal to interference-plus-noise ratio (SINR) for accurate target detection. Joint transmit-receive beampattern optimization is particularly investigated here. Specifically, in our work, we aim at maximizing the output SINR of the proposed polarization-subarray-based FDA radar by jointly optimizing the FDA transmit beamforming, the PSFDA spatial pointings and the PSFDA receive beamforming. To tackle the nonconvexity of the formulated SINR maximization problem, an alternating optimization algorithm is proposed to decompose the original problem into three convex subproblems, which can all be efficiently solved by the interior point method. Numerical experiments verify the superior output SINR performance of the proposed iterative algorithm.
基于偏振子阵列的分频阵列雷达收发波束方向图优化
在本文中,我们考虑了一种基于子阵列的分频阵列(FDA)作为发射阵列的雷达系统,该系统由两个不同频率增量的分频阵列组成,以实现对任何目标的单最大波束响应。为了在大多数情况下区分期望信号和空间方向接近的多重干扰,提出了一种新型极化敏感FDA (PSFDA)作为接收阵列,抑制干扰,进一步提高信噪比(SINR),实现精确目标检测。本文特别研究了联合收发波束方向图优化问题。具体来说,在我们的工作中,我们的目标是通过联合优化FDA发射波束形成、PSFDA空间指向和PSFDA接收波束形成来最大化所提出的基于极化子阵列的FDA雷达的输出信噪比。为了解决公式化SINR最大化问题的非凸性,提出了一种交替优化算法,将原问题分解为三个凸子问题,并利用内点法有效求解。数值实验验证了该迭代算法具有良好的输出信噪比性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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