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Wideband dynamic biasing of power amplifiers for wireless handheld applications.

机译:用于无线手持式应用的功率放大器的宽带动态偏置。

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摘要

The objective of the proposed research is to extend the battery life in cellular handsets by improving the transmitter efficiency. Bandwidth efficient modulation formats, such as W-CDMA, encode much of the information in amplitude modulation. Therefore, linear transmitters must be used so as not to increase transmission errors, and cause interference in adjacent bands. Various engineering trade-offs were examined to find a suitable transmitter architecture for W-CDMA. Dynamic biasing of the transmitter power amplifier (PA) provides a simple way to improve efficiency for applications that require highly linear amplification. The envelope elimination and restoration (EER) PA or EER-based polar-modulated PA is an attractive solution since it has potential to achieve very high efficiency with high linearity. However, the major impediment to EER implementation has been the lack of power-efficient dynamic power supply circuits that can operate with sufficient modulation bandwidth, and simultaneously achieve the required modulation linearity. This work proposes several solutions to this problem.; First, a dynamic supply circuit using delta modulation was designed and implemented. An open-loop EER PA with 48% peak efficiency was constructed and tested with a cellular band IS-95 CDMA signal with a bandwidth of 1.25 MHz. The low switching loss by using a delta modulator made the implementation of a wideband dynamic biasing circuit possible.; Second, a dynamic supply circuit using dual-phase PWM was designed and implemented to achieve wider bandwidth, lower noise, and higher efficiency. An open-loop EER PA was implemented with the dynamic supply IC. A digital gain compensation scheme was developed to further increase bandwidth and linearity. This enables a dynamic supply circuit with lower switching frequency to have larger usable bandwidth with little increased power consumption. A cellular band W-CDMA voice signal was used to evaluate the performance of the overall PA. The PA achieved 50% efficiency while passing all required spectral specifications of W-CDMA standard. To increase the inherent low dynamic range of an EER PA, a dual-mode power amplifier combining an EER PA and power-level tracking PA was proposed. The dual-mode PA is the first W-CDMA PA to improve both average efficiency and peak efficiency while covering the whole W-CDMA dynamic range.; This work will contribute to the development of high efficiency, small-sized multi-mode linear PAs for battery-operated wireless handheld devices.
机译:拟议研究的目的是通过提高发射器效率来延长蜂窝手机的电池寿命。带宽有效的调制格式(例如W-CDMA)在幅度调制中对许多信息进行编码。因此,必须使用线性发射机,以免增加传输错误,并在相邻频带中造成干扰。研究了各种工程折衷方案,以找到适合W-CDMA的发射机架构。发射机功率放大器(PA)的动态偏置为要求高度线性放大的应用提供了一种提高效率的简单方法。包络消除和恢复(EER)PA或基于EER的极性调制PA是一种有吸引力的解决方案,因为它具有以高线性度实现非常高效率的潜力。但是,实现EER的主要障碍是缺乏能以足够的调制带宽工作并同时实现所需的调制线性度的省电动态电源电路。这项工作为该问题提出了几种解决方案。首先,设计并实现了使用增量调制的动态电源电路。构建了具有48%峰值效率的开环EER PA,并使用带宽为1.25 MHz的蜂窝频段IS-95 CDMA信号进行了测试。使用三角形调制器的低开关损耗使得宽带动态偏置电路的实现成为可能。其次,设计并实现了使用双相PWM的动态电源电路,以实现更宽的带宽,更低的噪声和更高的效率。通过动态电源IC实现了开环EER PA。开发了一种数字增益补偿方案,以进一步增加带宽和线性度。这使得具有较低开关频率的动态电源电路具有较大的可用带宽,而功耗却很少增加。蜂窝频段W-CDMA语音信号用于评估整个PA的性能。该功率放大器达到了50%的效率,同时通过了W-CDMA标准的所有必需频谱规范。为了增加EER PA固有的低动态范围,提出了一种结合EER PA和功率电平跟踪PA的双模功率放大器。双模功率放大器是第一个在覆盖整个W-CDMA动态范围的同时提高平均效率和峰值效率的W-CDMA PA。这项工作将有助于开发用于电池供电的无线手持设备的高效,小型多模线性PA。

著录项

  • 作者

    Chen, Jau-Horng.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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