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Quasi-Load Insensitive Doherty PA Using Supply Voltage and Input Excitation Adaptation

机译:使用电源电压和输入激励自适应的准负载不敏感 Doherty PA

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摘要

This article presents a quasi-load insensitive (QLI) Doherty power amplifier (DPA). The proposed theory makes the amplifier load insensitive in terms of output power, while its efficiency is slightly degraded for complex loads. The load insensitiveness is achieved by dynamically changing the supply voltages ( ${V_{DD}}$ ) and the input power splitting for both the carrier and peaking transistors. The optimal, load-dependent, ${V_{DD}}$ values are theoretically derived from back-off (BO) and full power conditions using load line theory. The optimal input excitation signals for the carrier and peaking devices are also derived for these variable ${V_{DD}}$ conditions. A 3.6-GHz QLI DPA was designed, and a complete system, composed of the DPA output stage, a two-channel medium power driver, an adaptive input driving stage, and a load sensing system, was implemented. The laboratory measurements have been performed for loads distributed inside a 2.0 maximum voltage standing wave ratio (VSWR) circle and show an output power variation between 43.8 and 42.6 dBm and a BO efficiency between 50 and 35. Under modulated signal excitation, for the worst case loads, the peak output power capability of the DPA is improved from 41.7 to 43.1 dBm, and the average efficiency is increased from 32.6 to 43.
机译:本文介绍了一种准负载不敏感 (QLI) Doherty 功率放大器 (DPA)。该理论使放大器负载对输出功率不敏感,而对于复杂负载,其效率略有下降。负载不敏感是通过动态改变载波晶体管和峰值晶体管的电源电压(${V_{DD}}$)和输入功率分离来实现的。根据负载线理论,从理论上讲,与负载相关的 ${V_{DD}}$ 值是从回退 (BO) 和全功率条件下推导出来的。对于这些可变的${V_{DD}}$条件,还推导出载波和峰值器件的最佳输入激励信号。设计了3.6 GHz QLI DPA,实现了由DPA输出级、双通道中等功率驱动器、自适应输入驱动级和负载检测系统组成的完整系统。实验室测量是针对分布在 2.0 最大电压驻波比 (VSWR) 圆圈内的负载进行的,结果显示输出功率变化在 43.8 至 42.6 dBm 之间,BO 效率在 50% 至 35% 之间。在调制信号激励下,对于最坏情况负载,DPA的峰值输出功率能力从41.7 dBm提高到43.1 dBm,平均效率从32.6%提高到43%。

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