用于无线射频功率放大器优化的波峰因数降低和数字预失真

T. Miracco
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引用次数: 5

摘要

一些当前和几乎所有下一代无线系统采用的高阶调制方案,如正交频分复用(OFDM),要求尽可能高的发射机线性度和功率附加效率(PAE)。这一要求从射频功率晶体管延伸到使用它们的功率放大器(pa)。因此,放大器设计人员必须找到有效的方法来平衡实现最高PAE的需求,同时确保产生的RF输出信号不会通过频谱再增长干扰相邻信号。包括数字预失真和波峰因子降低在内的技术已经被开发出来,以实现最大的效率和动态范围,同时通过高邻接信道泄漏功率(ACLR)最小化频谱再增长。本文描述了这两种技术,说明了如何在设计的早期阶段有效地确定每种技术所能实现的优势,并以多载波3GPP WCDMA HSDPA信号为例展示了潜在的改进水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Crest factor reduction and digital pre-distortion for wireless RF power amplifier optimization
Higher-order modulation schemes such as orthogonal frequency division multiplexing (OFDM) employed by some current and virtually all next-generation wireless systems demand the highest possible transmitter linearity and power-added efficiency (PAE). This requirement extends from RF power transistors to the power amplifiers (PAs) in which they are employed. As a result, PA designers must find ways to effectively balance the need to achieve the highest PAE with ensuring the resulting RF output signal does not interfere with neighboring signals through spectral re-growth. Techniques including digital pre-distortion and crest factor reduction have been developed to achieve maximum efficiency and dynamic range while minimizing spectral re-growth through high adjacent-channel leakage power (ACLR). This paper describes both techniques, illustrates how the benefits achievable with each one can be effectively determined during the early stages of design, and shows the level of potential improvement using a multi-carrier 3GPP WCDMA HSDPA signal as an example.
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