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Beamformer With Constant-Gm Vector Modulators and Its Spatial Intermodulation Distortion

机译:具有恒定Gm矢量调制器的波束形成器及其空间互调失真

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Spatial interference rejection in analog adaptive beamforming receivers can improve the distortion performance of the circuits following the beamforming network, but is susceptible to the nonlinearity of the beamforming network itself. This paper presents an analysis of intermodulation product cancellation in analog active phased array receivers and verifies the distortion improvement in a four-element adaptive beamforming receiver for low-power applications in the 1.0–2.5-GHz frequency band. In this architecture, a constant-Gm vector modulator is proposed that produces an accurate equidistance square constellation, leading to a sliced frontend design that is duplicated for each antenna element. By moving the transconductances to RF, a fourfold reduction in power is achieved, while simultaneously providing input impedance matching. The 65-nm implementation consumes between 6.5 and 9 mW per antenna element and shows a +1 to +20 dBm in-band and out-of-beam third-order intercept point due to intermodulation distortion reduction.
机译:模拟自适应波束成形接收机中的空间干扰抑制可以改善波束成形网络之后的电路的失真性能,但是容易受到波束成形网络本身的非线性影响。本文对模拟有源相控阵接收机中的互调产物抵消进行了分析,并验证了针对1.0-2.5GHz频带中低功率应用的四元件自适应波束形成接收机的失真改善。在这种架构中,提出了一种恒定Gm矢量调制器,该调制器可产生准确的等距平方星座图,从而导致切片式前端设计对于每个天线元件重复。通过将跨导移至RF,可将功率降低四倍,同时提供输入阻抗匹配。每个天线元件的65nm实施功耗为6.5至9mW,由于互调失真的降低,其带内和束外三阶交调点显示为+1至+20 dBm。

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