Vector-corrected nonlinear multi-port IQ-mixer characterization using modulated signals

Sebastian Gustafsson, M. Thorsell, K. Buisman, C. Fager
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引用次数: 1

Abstract

In this paper, large-signal operation of IQ-mixers is studied using a vector-corrected four-port measurement setup with modulated signals as stimuli. The measurement setup presents unique characterization possibilities since it has two ports at low/baseband frequencies and two ports at RF, making it ideal for characterization of frequency-translating devices such as mixers. A commercial upconverting IQ-mixer is studied, with the I and Q input signals residing at incommensurate frequency grids, enabling separation of the nonlinear distortion generated in the I and Q branches. Frequency-domain and time-domain measurements reveal imbalances between the I and Q branches in terms of conversion gain and nonlinear distortion. It is also shown for the same mixer that operating the I and Q branches concurrently has limited influence on both conversion gain and nonlinear distortion, compared to non-concurrent operation.
矢量校正非线性多端口iq混频器特性使用调制信号
本文采用矢量校正四端口测量装置,以调制信号作为刺激,研究了iq混合器的大信号操作。测量装置提供了独特的表征可能性,因为它有两个低/基带频率端口和两个射频端口,使其成为频率转换设备(如混频器)表征的理想选择。研究了一种商用上变频iq混频器,其中I和Q输入信号驻留在不相称的频率网格中,使I和Q分支中产生的非线性失真分离。频域和时域测量揭示了I和Q支路在转换增益和非线性失真方面的不平衡。对于同一混频器,与非并发操作相比,同时操作I和Q支路对转换增益和非线性失真的影响有限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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