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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Adjustable Load With Tracking Loop to Improve RF Rectifier Efficiency Under Variable RF Input Power Conditions
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Adjustable Load With Tracking Loop to Improve RF Rectifier Efficiency Under Variable RF Input Power Conditions

机译:可调负载和跟踪环路,可在可变RF输入功率条件下提高RF整流器效率

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摘要

Terminating an RF rectifier with an optimum load resistance is important to maximize the efficiency of converting RF power to dc power. The optimum load resistance can also vary significantly as a function of RF input power. Therefore, an adjustable load circuit that tracks changes in RF power is required to maximize efficiency. As a way of implementing an adjustable load circuit that can provide a regulated output voltage to power a host system, a two-stage power-conversion circuit is proposed. The first stage is a dc-to-dc discontinuous mode converter that is controlled by an input loop to regulate the load impedance presented to the RF rectifier. The analysis, design, and experimental results of the first stage adjustable load circuit with a tracking loop are described. The load is connected to a 985-MHz 10-W GaN Class-F RF rectifier and results with the load circuit are compared to the optimum load.
机译:终止具有最佳负载电阻的RF整流器对于使RF功率转换为DC功率的效率最大化至关重要。最佳负载电阻也可能随RF输入功率的变化而显着变化。因此,需要一个可跟踪射频功率变化的可调负载电路来最大化效率。作为一种实现可调负载电路的方法,该负载电路可以提供稳定的输出电压来为主机系统供电,提出了一种两级电源转换电路。第一级是一个DC-DC不连续模式转换器,该转换器由输入环路控制,以调节提供给RF整流器的负载阻抗。描述了具有跟踪环路的第一级可调负载电路的分析,设计和实验结果。负载连接到985-MHz 10W GaN Class-F射频整流器,并将负载电路的结果与最佳负载进行比较。

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