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Power Efficiency and Linearity Enhancement Using Optimized Asymmetrical Doherty Power Amplifiers

机译:使用优化的非对称Doherty功率放大器提高功率效率和线性度

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This paper investigates the virtues of the asymmetrical Doherty power amplifier (PA) for improving the average power efficiency, linearity, and peak envelope power. It commences with an in-depth study of the effects of increasing the size of the peaking amplifier's transistor and its conduction angle on the Doherty PA's RF performance. In particular, the impact of the extended current profile of the peaking amplifier and reduced turn-on effects on the soft-turn characteristic are thoroughly analyzed, and their impacts on the average efficiency and peak power are deduced. Furthermore, the aggravation of the memory effects that accompany the gm3-based nonlinear distortion cancellation is experimentally demonstrated. Two asymmetrical Doherty PAs prototypes are fabricated using 80 W and 150 W laterally diffused metal oxide semiconductor field-effect transistors to individually improve average efficiency and linearity. When driven with a four carrier wideband code division multiple access (4C-WCDMA) signal, the asymmetrical Doherty PA allowed for excellent drain efficiency of approximately 50%, along with high linearity of approximately ${- {hbox {50}}}~{hbox {dBc}}$ , using a memory polynomial digital predistorter at an average output power of 50 W. To the best of the authors' knowledge, this achieved efficiency is the highest reported in the literature for a high-power Doherty PA implemented in LDMOS technology.
机译:本文研究了非对称Doherty功率放大器(PA)在改善平均功率效率,线性度和峰值包络功率方面的优点。它从深入研究峰值放大器晶体管的尺寸及其导通角对Doherty PA的RF性能的影响开始。尤其是,分析了峰值放大器扩展电流分布的影响和对软匝特性的减小的导通影响,并推论了它们对平均效率和峰值功率的影响。此外,实验证明了伴随基于gm3的非线性失真消除的记忆效应的加剧。使用80 W和150 W横向扩散的金属氧化物半导体场效应晶体管制造了两个非对称的Doherty PA原型,以分别提高平均效率和线性度。当使用四载波宽带码分多址(4C-WCDMA)信号驱动时,非对称Doherty PA的漏极效率约为50%,线性度约为$ {-{hbox {50}}}〜{ hbox {dBc}} $,使用存储器多项式数字预失真器,平均输出功率为50W。据作者所知,该实现的效率是文献中报道的针对在高功率Doherty PA中实现的最高效率。 LDMOS技术。

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