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RF imperfections in antenna arrays: Response analysis and widely-linear digital beamforming

机译:天线阵列中的射频缺陷:响应分析和广泛线性的数字波束成形

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In this paper, we analyze the impact of radio frequency (RF) circuit imperfections on the digital beamforming capabilities of linear antenna arrays. Special emphasis is on the I/Q imbalances and common channel responses of all individual parallel radio chains, and their impact on the radiation pattern is analyzed in closed form. We also propose an extension on the digital signal processing side, called widely-linear (WL) digital beamforming, in order to mitigate the influence of RF I/Q imbalances in digital beamforming processing instead of individually calibrating all the parallel radio chains. This is shown to efficiently recover the desired beamforming capabilities and directional properties which are initially corrupted by RF imperfections. As a practical example, a widely linear normalized least-mean square (WL-NLMS) algorithm with a known training signal is formulated to get optimal weights for signals from different antennas. The proposed method enables more accurate direction of arrival (DOA) estimations and beam steering properties even when operating under substantial RF imperfections in the RF circuits of a receiver.
机译:在本文中,我们分析了射频(RF)电路缺陷对线性天线阵列的数字波束成形能力的影响。特别强调所有单独的并行无线电链的I / Q不平衡和公共信道响应,并以封闭形式分析它们对辐射方向图的影响。我们还提议在数字信号处理方面进行扩展,称为广线性(WL)数字波束成形,以减轻数字波束成形处理中RF I / Q不平衡的影响,而不是单独校准所有并行无线电链。这表明可以有效地恢复所需的波束成形能力和方向特性,这些特性和方向特性最初会因射频缺陷而损坏。作为一个实际示例,制定了具有已知训练信号的广泛线性归一化最小均方(WL-NLMS)算法,以获取来自不同天线的信号的最佳权重。所提出的方法即使在接收器的射频电路中存在明显的射频缺陷时也能实现更准确的到达方向(DOA)估计和波束控制特性。

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