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A 5.8 GHz Low-Power Energy Harvester for RF Wireless Power Transfer Systems

机译:用于RF无线电力传输系统的5.8 GHz低功耗能量收割机

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摘要

This paper presents the design and implementation of an RF energy harvester system at 5.8 GHz for low-power wireless transmission applications. The potential application of the proposed system is to wirelessly power sensor nodes. First, a design methodology of the rectifier based on a theoretical approach is presented. The simulation results show an excellent correlation with the theoretical ones, proving the accuracy of the proposed design methodology. A prototype is fabricated and the simulation results are validated by the measurements. Then, the rectenna is combined to a commercial power management circuit and a load which emulates the behavior of a sensor. The power management circuit boosts and regulates the output DC voltage as well as stores the collected energy into a capacitor. Finally, the complete system is experimentally tested and excellent performances are demonstrated. The efficiency of the RF energy harvester is 24% at -10 dBm input power and 47% at -5 dBm input power which are the highest reported measured efficiencies at this frequency and at those power levels. The complete rectenna system is able to harvest 4.62 mJ in 40 s and 192 s for -6 dBm and -10 dBm input power, respectively allowing us to power wirelessly low-power electronic devices.
机译:本文提出了5.8 GHz的RF能量收割机系统的设计和实施,用于低功耗无线传输应用。所提出的系统的潜在应用是无线动力传感器节点。首先,提出了基于理论方法的整流器的设计方法。仿真结果表明,与理论上的卓越相关性,证明了所提出的设计方法的准确性。制造原型并通过测量验证模拟结果。然后,将intenna组合到商业电力管理电路和仿模传感器行为的负载。电源管理电路提升并调节输出直流电压,并将收集的能量存储到电容器中。最后,完整的系统是通过实验测试的,并证明了优异的性能。 RF能量收割机的效率在-10 dBm输入功率下为24%,在-5 dBm输入功率下为47%,这是在此频率和这些功率水平的最高报告的测量效率。完整的RESTENNA系统能够在40秒和192秒内收获4.62 MJ,分别为-6 dBm和-10 dBm输入电源,允许我们为无线低功耗的电子设备提供电源。

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