Design of a Radio Frequency Energy Harvester Impedance Matching Circuit for 2.4 GHz Microstrip Patch Antenna

O. Tooki, Olaide T. Olubolade, Alphaeus Odaba
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Abstract

Energy Harvesting (EH) is the process of capturing energy from external sources and storing it for small wireless autonomous devices. Radio Frequency (RF) EH aims at capturing ambient energy with an antenna and transforms this energy into exploitable power. Different energy fields are available in nature from which energy can be harvested. An impedance matching circuit for an RF energy harvester was designed in this paper. The design is made up of the antenna circuit which captures the RF signals from the mobile and Wi-Fi bands in the atmosphere, and the impedance network that matches between the RF source and the load to capture the power. A Villard voltage multiplier was employed to rectify and step up the captured RF signal into a useable direct current output voltage. Due to the low output voltage obtained after rectification, the voltage was boosted to the power needed for the load. The output of the boost converter was then used to charge a lithium-ion battery. In this paper, Intelligent Schematic Input System proteus professional suite software was used in simulating the designed system. This was used to analyze the performance of each system’s component and to evaluate the quality of the designed circuitry. RF energy harvesters convert electromagnetic waves into usable DC voltage. However, the harvested energy is relatively low to the required voltage. Different techniques have been proposed, but the complexity of energy harvesting persists. This discourages the use of low-power devices. Bridging this gap will improve energy harvesters’ efficiency.
2.4 GHz微带贴片天线射频能量采集器阻抗匹配电路设计
能量收集(EH)是从外部来源捕获能量并将其存储为小型无线自主设备的过程。射频(RF) EH旨在通过天线捕获环境能量,并将这些能量转化为可利用的能量。自然界中有不同的能量场,可以从中获取能量。设计了一种射频能量采集器的阻抗匹配电路。该设计由捕捉大气中移动频段和Wi-Fi频段射频信号的天线电路和匹配射频源和负载捕捉功率的阻抗网络组成。采用维拉德电压倍增器对捕获的射频信号进行整流和升压,使其变为可用的直流输出电压。由于整流后获得的输出电压低,电压被提升到负载所需的功率。升压转换器的输出随后被用于给锂离子电池充电。本文采用智能原理图输入系统proteus专业套件软件对设计的系统进行仿真。这用于分析每个系统组件的性能,并评估设计电路的质量。射频能量采集器将电磁波转换成可用的直流电压。然而,收获的能量相对于所需的电压是相对较低的。已经提出了不同的技术,但能量收集的复杂性仍然存在。这阻碍了低功耗设备的使用。弥合这一差距将提高能量收集器的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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