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Exploiting Spatial-Wideband Effect for Fast AoA Estimation at Lens Antenna Array

机译:利用空间宽带效应实现透镜天线阵列的快速AoA估计

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Energy-efficient, highly integrated lens antenna arrays (LAAs) have found widespread applications in wideband millimeter wave or terahertz communications, localization and tracking, and wireless power transfer. Accurate estimation of angle-of-arrival (AoA) is key to those applications, but has been hindered by a spatial-widehand effect in wideband systems. This paper proposes to exploit (rather than circumventing) the spatial-wideband effect to develop a fast and accurate AoA estimation approach for LAAs. Specifically, we unveil new spatial-frequency patterns based on the spatial-wideband effect, and establish one-to-one mappings between the patterns and the strongest discrete Fourier transform (MT) beam containing the AoA. With the strongest DR' beam identified, we propose a method to estimate the AoA uniquely and accurately, using only a few training symbols. This is achieved by deriving a new one-to-one mapping between the AoA and the set of DFT beams judiciously selected based on the strongest. In the case that an impinging path is uniformly distributed in [0,2 pi], simulations show that the proposed algorithm is able to reduce the mean squared error of the AoA estimation by as much as 82.1% while reducing the number of required symbols by 93.2%, as compared to existing techniques. The algorithm can also increase the spectral efficiency by 89% when the average SNR is -20 dB at each antenna of the receiver.
机译:高能效,高度集成的透镜天线阵列(LAA)在宽带毫米波或太赫兹通信,定位和跟踪以及无线功率传输中得到了广泛的应用。精确估计到达角(AoA)对于这些应用至关重要,但由于宽带系统中的空间宽手效应而受到阻碍。本文提议利用(而不是规避)空间宽带效应为LAA开发一种快速,准确的AoA估计方法。具体来说,我们基于空间宽带效应揭示了新的空间频率模式,并在模式与包含AoA的最强离散傅里叶变换(MT)波束之间建立了一对一的映射。在确定了最强的DR'光束的情况下,我们提出了一种仅使用几个训练符号即可唯一且准确地估计AoA的方法。这是通过在AoA和基于最强值明智选择的DFT光束集之间获得新的一对一映射来实现的。在撞击路径以[0,2 pi]均匀分布的情况下,仿真表明,该算法能够将AoA估计的均方误差降低82.1%,同时减少所需符号的数量与现有技术相比为93.2%。当接收器的每个天线的平均SNR为-20 dB时,该算法还可将频谱效率提高89%。

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