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Sampling Rate Reduction for Digital Predistortion of Broadband RF Power Amplifiers

机译:降低采样率以降低宽带射频功率放大器的数字预失真

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摘要

In this article, we present a novel technique to build digital predistorters that can linearize broadband power amplifiers (PAs) using reduced sampling rates. In contrast to conventional digital predistortion (DPD) where oversampling is necessary to avoid aliasing effect, the proposed method cancels the aliasing distortion using a sliced multistage cancellation scheme. A large reduction of sampling rate can be achieved in digital implementation of DPD, significantly reducing power consumption and implementation cost. Experimental results show that a DPD with a sampling rate of merely 1.5x, instead of 5x, signal bandwidth, can still produce satisfactory performance within the linearization bandwidth but consume only one-third of power, compared with that using the conventional approaches. The proposed technique provides a promising solution for the next-generation 5G systems, where large signal bandwidths are required.
机译:在本文中,我们提出了一种新颖的技术来构建数字预失真器,该数字预失真器可以使用降低的采样率来线性化宽带功率放大器(PA)。与传统的数字预失真(DPD)(为了避免混叠效应而必须进行过采样)相比,所提出的方法使用切片多级消除方案消除了混叠失真。在DPD的数字实现中,可以大大降低采样率,从而显着降低功耗和实现成本。实验结果表明,与传统方法相比,采样率仅为1.5倍而不是5倍的信号带宽的DPD仍能在线性带宽内产生令人满意的性能,但仅消耗三分之一的功率。拟议的技术为需要大信号带宽的下一代5G系统提供了有希望的解决方案。

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