用于空间应用的SSPA的EPC动态偏置控制

K. Shukla, N. Bijeev, V. Kumar, P. Bharadhwaj, A. Bhatt, R. Doshi
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引用次数: 2

摘要

本文描述了一种具有动态漏极偏置控制的电子电源调节器(EPC)的设计、实现和特性,该控制器可在一定输出功率水平范围内保持PA的效率。功率器件的漏极电压根据输入射频驱动器的动态变化以已知的方式变化,以在输出功率范围内获得更好的效率值。因此,与传统的回退解决方案相比,效率性能可以大大提高。所采用的15瓦c波段SSPA在输出功率为42 dBm时效率为30%。来自PA的耦合器和检测器提供射频输入样本,温度检测器为基于降压dc-dc转换器的漏极-偏置控制器提供温度数据。该变换器采用谐振复位技术进行正向拓扑设计。另一种低功率推挽转换器也用于为PA提供内务电源和低功率电源。与恒漏偏置(8V)放大器相比,动态偏置放大器的平均效率提高了8.3%。在42-37.5 dBm的输出功率范围内,漏极偏置从8V变化到5V,在较低功率水平下,效率从13.7%提高到22%。效率数字包括dc-dc变换器的损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EPC with dynamic bias control for SSPA for SPACE applications
This paper describes the design, implementation, and characterization of an Electronics Power Conditioner (EPC) with dynamic drain bias control that maintains efficiency of PA over a range of output power levels. The Drain voltage of power devices is varied in a known fashion against the input RF drive variations dynamically, to obtain better efficiency values over a range of output power. As a consequence, efficiency performances can be greatly improved as compared to classical back-off solutions. The employed 15-Watt C-band SSPA operates with 30% efficiency at an output power of 42 dBm. A coupler and detector from the PA provide a sample of RF input and a temperature detector provide the temperature data to the drain-bias controller, which is based on a buck dc-dc converter. The converter is designed with forward topology using resonant reset technique. Another low power push-pull converter is also used for providing housekeeping supply as well as low power supplies to the PA. When compared with a PA with constant drain bias (8V), the average efficiency of the PA with dynamic biasing is improved by 8.3%. Over an output power between 42-37.5 dBm, the drain bias varies from 8V to 5V, and the efficiency improves from 13.7 % to 22% at the lower power level. The efficiency figures include the losses in the dc-dc converter.
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