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EXPERIMENTAL OPTIMIZATION OF THE 2nd LOOP CONFIGURATION FOR FEEDFORWARD AMPLIFIERS IN TERMS OF THEIR EFFICIENCY AND LINEARITY

机译:前馈放大器效率和线性度的第二回路配置的实验优化

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摘要

In this paper, we report the results of the experimental optimization of the 2nd-loop configuration for feedforward amplifiers in terms of their efficiency and linearity. We consider two parameters in the 2nd-loop of a feedforward amplifier: (i) the size ratio between the main and error amplifiers and (ii) the coupling factor of the error signal coupler. Experiments are performed using a multicarrier down-link WC-DMA signal under various configurations. The measured data, which are normalized with respect to the overall power capacity of the main and error amplifiers, show that, among the different 2nd-loop configurations, the best compromised efficiency (13.4%) at a given adjacent channel leakage ratio (ACLR) level (-50 dBc) is observed for a size ratio of around 3.0 and a coupling factor of around 7.2 dB.
机译:在本文中,我们从效率和线性方面报告了前馈放大器第二环路配置的实验优化结果。我们在前馈放大器的第二环路中考虑两个参数:(i)主放大器和误差放大器之间的尺寸比,以及(ii)误差信号耦合器的耦合系数。使用各种配置的多载波下行链路WC-DMA信号进行实验。相对于主放大器和误差放大器的总功率进行归一化的测量数据表明,在不同的第二环路配置中,在给定的相邻信道泄漏比(ACLR)下,最佳折衷效率(13.4%)对于大约3.0的尺寸比和大约7.2 dB的耦合因子,可以观察到最大声级(-50 dBc)。

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