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Successive Regeneration and Adaptive Cancellation of Higher Order Intermodulation Products in RF Receivers

机译:射频接收机中高阶互调产物的连续再生和自适应抵消

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摘要

In this paper, a general framework for the adaptive feedforward cancellation of higher order intermodulation distortion (IMD) products is presented. By generating only second-order and principal-odd-order IMD reference products in the RF/analog domain and reproducing higher order IMD reference products at digital baseband, the proposed reference distortion scheme minimizes the analog hardware burden on the system. Inherent in this procedure is an approximation that the profile of blocking signals causing IMD is dominated by one very large blocker. The limitations imposed by this approximation are quantitatively examined and shown to permit cancellation ratios of nearly the square of the ratio between the dominant and nondominant blocking signal RMS amplitudes. An experimental receiver employing the proposed technique was constructed utilizing a wide-swing low-noise transconductance amplifier in order to accommodate a rail-to-rail (${+}$ 12.4 dBm) out-of-band blocker and a ${-}$16.3-dBm nondominant blocker. The measured receiver out-of-band 1-dB desensitization point is ${+}$12.5 dBm and the peak uncorrected two-tone third-order intermodulation intercept point (IIP3) is ${+}$33.5 dBm. Utilizing the proposed IMD cancellation scheme in the presence of a modulated dominant blocker improves the total input-referred IMD error power by over 24 dB, resulting in an extrapolated IIP3 metric of ${+}$ 43.5 dBm.
机译:本文提出了一种高阶互调失真(IMD)产品的自适应前馈抵消的通用框架。通过在RF /模拟域中仅生成二阶和主阶IMD参考产品,并在数字基带上再现高阶IMD参考产品,建议的参考失真方案最大程度地降低了系统的模拟硬件负担。此过程的本质是一种近似,即导致IMD的阻塞信号的分布由一个非常大的阻塞器控制。定量检查了这种近似所施加的限制,并显示出其消除比几乎等于主导和非主导阻塞信号RMS幅度之比的平方。利用宽摆幅低噪声跨导放大器构造了采用建议技术的实验接收机,以适应轨到轨($ {+} $ 12.4 dBm)带外阻塞器和$ {-} $ 16.3-dBm非主要阻断剂。测得的接收机带外1 dB脱敏点为$ {+} $ 12.5 dBm,未校正的峰值二音三阶互调截取点(IIP3)为$ {+} $ 33.5 dBm。在调制的显性阻塞器的存在下使用提议的IMD抵消方案,将总输入参考IMD误差功率提高了24 dB以上,从而得出了43.5 dBm的外推IIP3度量。

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