基于双输入特性的Doherty功率放大器优化

A. Piacibello, R. Quaglia, V. Camarchia, C. Ramella, M. Pirola
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引用次数: 1

摘要

与其他效率增强技术相比,Doherty架构的成功主要源于其简单的设计和全射频特性,不需要复杂的数字信号处理来实现高回退效率。在这项工作中,我们提出了一种优化Doherty功率放大器的设计策略,以减轻该架构中与非线性模型和制造不准确相关的典型实际问题。该方法基于无输入部分的双输入Doherty原型的实验特性。该测试结构由单输入Doherty放大器获得,仅通过非线性仿真设计,通过去除输入部分并允许对两个RF输入进行单独控制。根据所收集的数据,确定了相移和功率分裂随频率的近似函数,可以在射频网络的硬件上实现。与参考单输入Doherty级相比,在输出功率(高达2.7 dB)、饱和和回退效率(分别为30%和15%)和功率增益(2 dB)方面有了显著改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimisation of a Doherty power amplifier based on dual-input characterisation
The success of the Doherty architecture compared to other efficiency enhancement techniques derives mainly from its simple design and full-RF nature, not requiring complex digital signal processing to achieve high back-off efficiency. In this work we propose a design strategy for the optimisation of a Doherty power amplifier to mitigate the typical practical issues of this architecture related to inaccuracy of the non-linear model and of the manufacturing. The approach is based on the experimental characterisation of a dual-input Doherty prototype without input section. This test structure is obtained from a single-input Doherty amplifier, designed only through non-linear simulations, by removing the input section and allowing for separate control of the two RF inputs. From the collected data, approximated functions for the phase shift and power splitting versus frequency are identified to be realizable in hardware with RF networks. Compared to the reference single-input Doherty stage, a significantly improved behavior is registered in terms of output power (up to 2.7 dB), efficiency at saturation and back-off (30 % and 15 % respectively) and power gain (2 dB).
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