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Adaptive Power Amplifiers for Modern Communication Systems with Diverse Operating Conditions

机译:具有多种工作条件的现代通信系统的自适应功率放大器

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摘要

In this thesis, novel designs for adaptive power amplifiers, capable of maintaining excellent performance at dissimilar signal parameters, are presented. These designs result in electronically reconfigurable, single-ended and Doherty power amplifiers (DPA) that efficiently sustain functionality at different driving signal levels, highly varying time domain characteristics and wide-spread frequency bands. The foregoing three contexts represent those dictated by the diverse standards of modern communication systems.Firstly, two prototypes for a harmonically-tuned reconfigurable matching network using discrete radio frequency (RF) microelectromechanical systems (MEMS) switches and semiconductor varactors will be introduced. Following that is an explanation of how the varactor-based matching network was used to develop a high performance reconfigurable Class F-1 power amplifier.Afterwards, a systematic design procedure for realizing an electronically reconfigurable DPA capable of operating at arbitrary centre frequencies, average power levels and back-off efficiency enhancement power ranges is presented. Complete sets of closed-form equations are outlined which were used to build tunable matching networks that compensate for the deviation of the Doherty distributed elements under the desired deployment scenarios. Off-the-shelf RF MEMS switches are used to realize the reconfigurability of the adaptive Doherty amplifiers.Finally, based on the derived closed-form equations, a tri-band, monolithically integrated DPA was realized using the Canadian Photonics Fabrication Centre (CPFC®) GaN500 monolithic microwave integrated circuit (MMIC) process. Successful integration of high power, high performance RF MEMS switches within the MMIC process paved the way for the realization of the frequency-agile, integrated version of the adaptive Doherty amplifier.
机译:本文提出了一种自适应功率放大器的新颖设计,该设计能够在不同的信号参数下保持出色的性能。这些设计产生了可电子重新配置的单端和Doherty功率放大器(DPA),可以在不同的驱动信号电平,高度变化的时域特性和宽频带上有效维持功能。以上三种情况代表了现代通信系统的各种标准所规定的背景。首先,将介绍两个使用离散射频(RF)微机电系统(MEMS)开关和半导体变容二极管的谐波可调谐可重构匹配网络的原型。接下来说明如何使用基于变容二极管的匹配网络开发高性能可重配置的F-1类功率放大器。随后,系统地设计程序实现了可在任意中心频率,平均功率下工作的电子可重配置DPA。给出了电平和退避效率增强功率范围。概述了完整的闭式方程组,这些方程组用于构建可调整的匹配网络,以补偿在所需部署方案下Doherty分布式元素的偏差。最后,使用现成的RF MEMS开关来实现自适应Doherty放大器的可重新配置性。最后,基于导出的闭合形式方程式,使用加拿大光子制造中心(CPFC®)实现了三频段,单片集成DPA )GaN500单片微波集成电路(MMIC)工艺。高功率,高性能RF MEMS开关在MMIC工艺中的成功集成为实现自适应Doherty放大器的频率捷变集成版本铺平了道路。

著录项

  • 作者

    Mahmoud Mohamed Ahmed;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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