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A 4-element phased-array system with simultaneous spatial- and frequency-domain filtering at the antenna inputs

机译:一种4元件相控阵系统,在天线输入端同时进行空间和频域滤波

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摘要

To reject strong interference in excess of 0 dBm, a 4- element LO-phase shifting phased-array receiver with 8-phase passive mixers terminated by baseband capacitors is presented. The passive mixers upconvert both the spatial and frequency domain filtering from baseband to RF, hence realizing blocker suppression directly at the antenna inputs. A comprehensive mathematical model provides a set of closed-form equations describing the spatial and frequency domain filtering including imperfections. A prototype is realized in 28 nm CMOS. It exploits third harmonic reception to achieve a wide RF-frequency range from 0.6–4.5 GHz at 34–119 mW power dissipation, while also providing impedance matching. Out of the band/beam, a 1 dB-compression point as high as +12/+10 dBm has been measured. The 1-element noise figure over the RF-frequency range is 4–6.3 dB, while in-beam/band IIP3 values of 0– +2.6 dBm are measured. This proposed technique can be instrumental to make RF receivers more robust for interference, while still being flexibly tunable in frequency.
机译:为了抑制超过0 dBm的强烈干扰,提出了一种4元素LO相移相控阵接收器,该接收器具有由基带电容器端接的8相无源混频器。无源混频器将空间和频域滤波从基带上变频到RF,因此直接在天线输入端实现了抑制器抑制。全面的数学模型提供了一组封闭形式的方程,描述了包括缺陷在内的空间和频域滤波。在28 nm CMOS中实现了原型。它利用三次谐波接收在34-119 mW功耗下实现0.6-4.5 GHz的宽RF频率范围,同时还提供了阻抗匹配。在频带/束外,已测量到高达+ 12 / + 10 dBm的1 dB压缩点。射频频率范围内的1元素噪声系数为4–6.3 dB,而波束内/频段IIP3的测量值为0– +2.6 dBm。所提出的技术可能有助于使RF接收器对干扰更鲁棒,同时仍然可以灵活地调谐频率。

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