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Simple nonlinearity evaluation and modeling of low-noise amplifiers with application to radio astronomy receivers

机译:低噪声放大器的简单非线性评估和建模及其在射电天文接收机中的应用

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摘要

This paper describes a comparative nonlinear analysis of low-noise amplifiers (LNAs) under different stimuli for use in astronomical applications. Wide-band Gaussian-noise input signals, together with the high values of gain required, make that figures of merit, such as the 1 dB compression (1 dBc) point of amplifiers, become crucial in the design process of radiometric receivers in order to guarantee the linearity in their nominal operation. The typical method to obtain the 1 dBc point is by using single-tone excitation signals to get the nonlinear amplitude to amplitude (AM-AM) characteristic but, as will be shown in the paper, in radiometers, the nature of the wide-band Gaussian-noise excitation signals makes the amplifiers present higher nonlinearity than when using single tone excitation signals. Therefore, in order to analyze the suitability of the LNA’s nominal operation, the 1 dBc point has to be obtained, but using realistic excitation signals. In this work, an analytical study of compression effects in amplifiers due to excitation signals composed of several tones is reported. Moreover, LNA nonlinear characteristics, as AM-AM, total distortion, and power to distortion ratio, have been obtained by simulation and measurement with wide-band Gaussian-noise excitation signals. This kind of signal can be considered as a limit case of a multitone signal, when the number of tones is very high. The work is illustrated by means of the extraction of realistic nonlinear characteristics, through simulation and measurement, of a 31 GHz back-end module LNA used in the radiometer of the QUIJOTE (Q U I JOint TEnerife) CMB experiment
机译:本文介绍了在天文应用中不同刺激下低噪声放大器(LNA)的比较非线性分析。宽带高斯噪声输入信号,以及所需的高增益值,使得功放系数(例如放大器的1 dB压缩(1 dBc)点)对于辐射接收器的设计过程至关重要,保证其标称工作的线性度。获得1 dBc点的典型方法是使用单音激励信号来获得非线性幅度到幅度(AM-AM)特性,但是,正如本文将在辐射计中所示,宽带的性质与使用单音激励信号时相比,高斯噪声激励信号使放大器呈现更高的非线性度。因此,为了分析LNA标称工作的适用性,必须使用真实的激励信号获得1 dBc点。在这项工作中,报告了由于激励信号由多个音调组成的放大器的压缩效果的分析研究。而且,通过宽带高斯噪声激励信号的仿真和测量,已经获得了LNA的非线性特性,例如AM-AM,总失真和功率失真比。当音调数量很高时,可以将这种信号视为多音调信号的极限情况。通过仿真和测量,提取实际非线性特性,通过对QUIJOTE(Q U I JOint TEnerife)CMB实验辐射计使用的31 GHz后端模块LNA进行说明,说明了这项工作。

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