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Enhanced radio frequency rectifier with a power splitting/combining topology for wireless energy transfer and harvesting

机译:具有功率分配/组合拓扑的增强型射频整流器,用于无线能量传输和收集

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摘要

Power splitting of the input radio frequency (RF) signal is used to improve the efficient power range of a RF rectifier. Direct current (dc) power at the output of every rectifying branch is then combined over a resistive load and thus resulting in a single dc output. The enhancement in efficient power range, over which the power conversion efficiency (PCE) remains >= 50%, is determined to be 2.8 dB. The article starts by a theoretical analysis that addresses the negative effects of the diode's breakdown voltage, formulates an equation that predicts the maximum output dc voltage at saturation, and introduces a method that can improve the PCE of a typical shunt-type diode rectifier at low power levels. As a result, a rectifying system is designed and tested as a proof of concept. The proposed circuit, with the enhanced power range, is designed to operate within the power span from -10 dBm up until 10 dBm. Such system is suitable for operation in RF wireless energy transfer and energy harvesting applications.
机译:输入射频(RF)信号的功率分配用于改善RF整流器的有效功率范围。然后,每个整流支路的输出处的直流(dc)功率会在阻性负载上组合在一起,从而产生单个dc输出。功率转换效率(PCE)保持> = 50%的有效功率范围的增强被确定为2.8 dB。本文从理论分析入手,该理论分析解决了二极管击穿电压的负面影响,制定了可预测饱和状态下最大输出直流电压的方程式,并介绍了一种可在较低温度下改善典型并联型二极管整流器PCE的方法。功率水平。结果,设计并测试了整流系统作为概念证明。拟议中的电路具有增强的功率范围,旨在在-10 dBm至10 dBm的功率范围内工作。这样的系统适合于在射频无线能量传输和能量收集应用中的操作。

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