Implementation of RF Energy Harvesting System with Efficiency Improvement by Using Metamaterials

S. Eardprab, Chao Chanadee
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引用次数: 2

Abstract

This paper proposed implementing an RF energy harvesting system with efficiency improvement by using metamaterials. The system can store the energy and supply it to a load or sensor device in the IoT system. The microstrip rectenna and metamaterial structure were implemented to improve efficiency in the energy harvesting system at 2.4 GHz. The microstrip rectenna was composed of a microstrip antenna and a rectifier circuit to converts receiving RF signal into DC voltage. Two metamaterial types were applied to the energy harvesting system: 1) the artificial magnetic conductor type which designed to be placed behind the rectenna and 2) the multiple split-ring resonators with a negative refraction index which placed in front of the rectenna. The fabricated prototypes were implemented on an RF energy harvesting system to demonstrate that the metamaterials improved the system efficiency. The measurement showed that the efficiency of the energy harvesting system was improved by using metamaterial. The electric charging time on a capacitor was measured. It was found that the electric charging time in the case of the system with AMC and MSRR structures was faster than the one without metamaterial structures.
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利用超材料实现提高效率的射频能量收集系统
本文提出了利用超材料实现一种提高效率的射频能量收集系统。该系统可以存储能量并将其提供给物联网系统中的负载或传感器设备。采用微带整流天线和超材料结构来提高2.4 GHz能量收集系统的效率。微带整流天线由微带天线和整流电路组成,将接收到的射频信号转换成直流电压。在能量收集系统中应用了两种超材料类型:1)放置在整流天线后面的人工磁性导体类型和2)放置在整流天线前面的具有负折射率的多分裂环谐振器。在射频能量收集系统上实现了制造的原型,证明了超材料提高了系统效率。测量结果表明,利用超材料提高了能量收集系统的效率。测量了电容器的充电时间。研究发现,有AMC和MSRR结构的系统的充电时间比没有超材料结构的系统要快。
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