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Sampling H- V-Polarized Antennas using a Single ADC for Digital Antenna Arrays by Exploiting Multi-Dimensional Signal Processing RF Circuits

机译:通过利用多维信号处理RF电路,使用单个ADC进行数字天线阵列的单个ADC采样H-&V极化天线

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Digital array receivers increasingly require both H and V polarization of the incident RF waves while supporting full-band operation. A wideband ADC is required for each polarization at every location of the array, leading to 2N ADCs for N locations. The paper proposes exploiting multidimensional sparsity in the spatio-temporal frequency domain to reduce the number of ADCs from 2N to N, while supporting two polarizations and wideband RF-digital operation. By using spatio-temporal sparsity with multi-dimensional linear transforms, it is proposed to combine the H and V array signals without interference, such that, the combined array signal can be sampled using just N ADCs. This allows a modern RFSoC or array receiver with N wideband ADC inputs to process N spatial locations in an array where each location contains a cross-polarized element measuring both H and V components, doubling the information carrying capacity of the N-ADC system provided that the elements limit the field-of-view to about 60°.
机译:数字阵列接收器越来越需要入射的RF波的H和V偏振,同时支持全带操作。每个阵列位置处的每个偏振都需要宽带ADC,导致N个位置的2N ADC。本文提出利用时空频域中的多维稀疏性来减少2N至N的ADC的数量,同时支持两个偏振和宽带RF数字操作。通过利用多维线性变换的时空稀疏性,建议将H和V阵列信号组合而不干扰,使得可以使用N ADC来对组合的阵列信号进行采样。这允许具有N个宽带ADC输入的现代RFSOC或阵列接收器来处理阵列中的N个空间位置,其中每个位置包含测量H和V组件的交叉偏振元件,提供了N-ADC系统的信息承载能力的加倍该元素将视野视图限制为大约60°。

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