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Theory and Implementation of RF-Input Outphasing Power Amplification

机译:射频输入异相功率放大的理论与实现

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Conventional outphasing power amplifier systems require both a radio frequency (RF) carrier input and a separate baseband input to synthesize a modulated RF output. This work presents an RF-input/RF-output outphasing power amplifier that directly amplifies a modulated RF input, eliminating the need for multiple costly IQ modulators and baseband signal component separation as in previous outphasing systems. An RF signal decomposition network directly synthesizes the phase- and amplitude-modulated signals used to drive the branch power amplifiers (PAs). With this approach, a modulated RF signal including zero-crossings can be applied to the single RF input port of the outphasing RF amplifier system. The proposed technique is demonstrated at 2.14 GHz in a four-way lossless outphasing amplifier with transmission-line power combiner. The RF decomposition network is implemented using a transmission-line resistance compression network with nonlinear loads designed to provide the necessary amplitude and phase decomposition. The resulting proof-of-concept outphasing power amplifier has a peak CW output power of 93 W, peak drain efficiency of 70%, and performance on par with a previously-demonstrated outphasing and power combining system requiring four IQ modulators and a digital signal component separator.
机译:常规的移相功率放大器系统既需要射频(RF)载波输入,又需要单独的基带输入,以合成调制的RF输出。这项工作提出了一种RF输入/ RF输出异相功率放大器,它可以直接放大调制的RF输入,从而无需像以前的异相系统那样需要多个昂贵的IQ调制器和基带信号分量分离。 RF信号分解网络直接合成用于驱动分支功率放大器(PA)的相位和幅度调制信号。通过这种方法,可以将包括零交叉点的已调制RF信号施加到异相RF放大器系统的单个RF输入端口。该技术在带有传输线功率组合器的四路无损移相放大器中以2.14 GHz的频率进行了演示。使用具有非线性负载的传输线电阻压缩网络来实现RF分解网络,该非线性负载旨在提供必要的幅度和相位分解。最终概念验证的相移功率放大器的峰值CW输出功率为93 W,峰值漏极效率为70%,性能与之前演示的需要四个IQ调制器和数字信号组件的相移和功率组合系统相当分隔器。

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