Co-Design of Dual-Purpose Heatsink Antenna for Multi-Source Ambient Energy Harvesting

Azamat Bakytbekov, A. Shamim
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引用次数: 1

Abstract

IoT infrastructure involves billions of devices that must be self-sustainable. Using ambient energy sources to power IoT devices is a promising solution. Ambient RF and thermal energy (diurnal temperature fluctuations) harvesters have great potential since both are available continuously. Smart integration is required for these two harvesters to create synergy and collect more energy. Here, a dual-purpose triple-band heatsink antenna for multi-source ambient energy harvesting is presented. Heatsink antenna serves as a receiving antenna for the RF energy harvester and serves as a heatsink for the thermal energy harvester (TEH). Co-optimization of the heatsink antenna is performed in Ansys HFSS and Ansys Fluent simultaneously. Heatsink antenna operates at GSM900, GSM1800, 3G bands with measured gains of 3.8dB, 4dB, 5.3dB respectively. Antenna gain is doubled (~3dB) and the TEH performance is tripled (200%) when the heatsink fins are integrated, emphasizing the benefit of the co-design and smart integration via heatsink antenna.
多源环境能量采集双用途散热器天线协同设计
物联网基础设施涉及数十亿台设备,这些设备必须是自给自足的。利用环境能源为物联网设备供电是一个很有前途的解决方案。环境射频和热能(昼夜温度波动)采集器具有巨大的潜力,因为两者都是连续可用的。这两个收割机需要智能集成,以产生协同作用并收集更多的能量。本文提出了一种用于多源环境能量收集的双用途三波段散热器天线。散热器天线作为射频能量采集器的接收天线,作为热能采集器(TEH)的散热器。同时在Ansys HFSS和Ansys Fluent中对散热器天线进行了协同优化。散热天线工作在GSM900、GSM1800、3G频段,测量增益分别为3.8dB、4dB、5.3dB。当散热器翅片集成时,天线增益增加一倍(~3dB), TEH性能增加两倍(200%),强调通过散热器天线进行协同设计和智能集成的好处。
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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