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Exploring predistortion training algorithms in a Cartesian feedback-trained digital predistortion system for RF power amplifier linearization

机译:探索笛卡尔反馈训练数字预失真系统中的预失真训练算法,用于射频功率放大器线性化

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摘要

A Cartesian feedback-trained digital predistortion system for RF power amplifier linearization offers many advantages with its combination of two different linearization techniques. This thesis describes such a system, focusing on the important issue of predistorter training. It examines and analyzes in great detail the promising loop filter pre-charging optimization and the tradeoffs associated with such training, developing a model that provides many valuable system design insights. In order establish a means to experimentally verify the theory and explore predistortion training algorithms, this thesis presents the design, development, and characterization of a mock-up prototype that models the essential features of the actual Cartesian feedback-trained digital predistortion system. The mock-up serves as a standalone proof-of-concept system that demonstrates the benefits and tradeoffs of loop filter pre-charging in predistorter training. It confirms the theory while also revealing practical issues pertaining to the limits on performance.
机译:用于射频功率放大器线性化的笛卡尔反馈训练数字预失真系统通过结合两种不同的线性化技术而具有许多优势。本文介绍了这样一个系统,重点研究了预失真器训练的重要问题。它详细检查和分析了有前途的环路滤波器预充电优化以及与此类训练相关的权衡,从而开发了一种模型,该模型可提供许多有价值的系统设计见解。为了建立一种实验验证该理论并探索预失真训练算法的方法,本论文介绍了一种模型的设计,开发和表征,该模型对实际的笛卡尔反馈训练的数字预失真系统的基本特征进行建模。样机用作独立的概念验证系统,演示了预失真器训练中环路滤波器预充电的好处和取舍。它在确认理论的同时还揭示了与性能限制有关的实际问题。

著录项

  • 作者

    Huang Jeffrey B;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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