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Wideband active envelope load-pull for robust power amplifier and transistor characterisation

机译:宽带有源包络负载牵引,用于稳健的功率放大器和晶体管表征

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摘要

The advent of fourth generation (4G) wireless communication with available modulation bandwidth ranging from 1 MHz to 20 MHz is starting to emerge. The linear modulation technique being employed means that the power amplifiers that support the standards need to have high degree of linearity. By nature, however, all power amplifiers are non-linear. Load-pull measurement system provides anindispensable non-linear tool for the characterization of power amplifier and transistor for linearity enhancement. Conventional passive or active load-pull has delay problem that get worse as the modulation frequency is increased beyond few MHz. Furthermore in order to provide robust non-linear measurement, load-pull system needs to provide bandwidth at least five times the modulation bandwidth by including the fifth-order inter-modulation (IMD5). This thesis presents, for the first time, delay compensation on the unique active envelope load-pull architecture providing constant impedance for bandwidth up to 20 MHz. In doing so, it provides a superior load-pull measurement and also the ability to directly control in-band impedances. Artificial variations imposed on the in-band impedances offer further insight on power amplifier and transistor behaviours under wideband multi-tone stimulus.
机译:具有从1 MHz到20 MHz的可用调制带宽的第四代(4G)无线通信的出现开始出现。采用线性调制技术意味着支持标准的功率放大器需要具有高度的线性度。但是,从本质上讲,所有功率放大器都是非线性的。负载拉力测量系统提供了不可缺少的非线性工具,用于表征功率放大器和晶体管,以增强线性度。常规的无源或有源负载牵引具有延迟问题,随着调制频率增加到几兆赫兹以上,延迟问题变得更糟。此外,为了提供鲁棒的非线性测量,负载牵引系统需要通过包括五阶互调(IMD5)提供至少为调制带宽五倍的带宽。本文首次提出了独特的有源包络负载牵引架构上的延迟补偿,可为高达20 MHz的带宽提供恒定的阻抗。这样,它可以提供出色的负载拉力测量,还可以直接控制带内阻抗。施加在带内阻抗上的人为变化可进一步了解宽带多音刺激下的功率放大器和晶体管行为。

著录项

  • 作者

    Hashim Shaiful Jahari;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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