Transmit beamforming design for two-dimensional phased-MIMO radar with fully-overlapped subarrays

Anastasios Deligiannis, J. Chambers, S. Lambotharan
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引用次数: 11

Abstract

We investigate a subaperturing technique for two-dimensional (2D) transmit arrays within the context of multiple-input multiple-output (MIMO) radar. Specifically, we investigate the performance of transmit beamforming using fully overlapped subarrays of a 2D transmit array. As reported for linear array of antennas, this 2D transmit array exploits the advantages of the MIMO radar technology without sacrificing the coherent processing gain at the transmit side provided by the phased-array concept. In order to achieve high coherent processing gain, a weight vector should be designed for each subarray to steer the transmit beam in certain 2D sector in space. This is achieved by solving a convex optimization problem that minimizes the difference between a desired transmit beampattern and the actual beampattern produced by the 2D array of antennas, under a constraint in terms of uniform power allocation across the transmit antennas.
具有完全重叠子阵的二维相控mimo雷达发射波束形成设计
我们研究了在多输入多输出(MIMO)雷达环境下二维(2D)发射阵列的子孔径技术。具体而言,我们研究了使用二维发射阵列的完全重叠子阵列的发射波束形成性能。据报道,对于线性天线阵列,这种二维发射阵列利用了MIMO雷达技术的优势,而不会牺牲相控阵概念提供的发射侧相干处理增益。为了获得较高的相干处理增益,需要为每个子阵设计一个权向量,使发射波束在空间的某一二维扇区内运动。这是通过解决一个凸优化问题来实现的,该问题在发射天线之间均匀功率分配的约束下,将期望的发射波束方向图与2D天线阵列产生的实际波束方向图之间的差异最小化。
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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