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Dense transmit and receive phased arrays

机译:密集的发射和接收相控阵

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A dense antenna array architecture is developed to ease the circuit requirements of the radio frequency (RF) front-end in beamforming applications. In the architecture, antennas are spaced more closely than required by the sampling principle to exploit the available degrees of freedom. This array structure is analogous to temporally oversampled data conversion systems, which have reduced quantizer resolution requirements. In [1], we have developed a spatial-domain version of ΔΣ quantization, and have shown that with binary quantization for the in-phase and quadrature components of antenna weights, modest amounts of oversampling can reproduce beamforming patterns of interest to practically useful levels of accuracy. In this paper, we incorporate mutual coupling between antennas and impedance matching in the over-sampling scheme and analyze their effects on the performance of this dense-array architecture. These effects do not change the validity of the dense array.
机译:开发了密集天线阵列架构,以减轻波束成形应用中射频(RF)前端的电路要求。在该体系结构中,天线之间的间隔比采样原理所需的间隔要更紧密,以利用可用的自由度。这种阵列结构类似于在时间上过采样的数据转换系统,该系统具有降低的量化器分辨率要求。在[1]中,我们开发了ΔΣ量化的空间域版本,并表明通过对天线权重的同相和正交分量进行二进制量化,适度的过采样量可以将感兴趣的波束成形方向图重现到实际有用的水平准确性。在本文中,我们将天线之间的相互耦合和阻抗匹配纳入了过采样方案,并分析了它们对这种密集阵列架构的性能的影响。这些效果不会更改密集数组的有效性。

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