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A Tuning Technique for Temperature and Process Variation Compensation of Power Amplifiers with Digital Predistortion

机译:具有数字预失真的功率放大器温度和过程变化补偿的调谐技术

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Radio frequency (RF) power amplifiers (PAs) are the most power consuming and inefficient devices in RF transceiver systems and are often integrated with performance enhancement techniques such as digital predistortion (DPD). However, the performance of the integrated system (PA with DPD) is significantly impacted by temperature drift and process variations and thus it is essential to have a tuning mechanism that compensates for these variations. This paper presents the idea for a novel tuning technique that incorporates a digital-to-analog converter (DAC) in the integrated system (PA with DPD) to utilize the error signal generated by the digital predistortion technique to automatically tune the power amplifier's bias voltage for optimal performance. To evaluate the proposed tuning mechanism, simulation results from a closed-loop system consisting of an inverted Doherty power amplifier with digital predistortion integrated are presented.
机译:射频(RF)功率放大器(PAS)是RF收发器系统中最耗电和低效的设备,通常与性能增强技术(如数字预失真)集成,如数字预失真(DPD)。然而,集成系统(PA使用DPD)的性能受到温度漂移和工艺变化的显着影响,因此必须具有补偿这些变化的调谐机构。本文提出了一种新颖的调谐技术,它在集成系统(PA用DPD)中包含数字到模拟转换器(DAC)来利用由数字预失真技术产生的误差信号来自动调谐功率放大器的偏置电压为了最佳性能。为了评估所提出的调谐机制,提出了由具有数字预失真集成的反相电力放大器组成的闭环系统的仿真结果。

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