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Experimental Observations on Hybrid RF-Solar Energy Harvesting Circuit for Low Power Applications

机译:用于低功率应用的混合射频太阳能收集电路的实验观察

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This paper investigates the performance of hybrid RF-Solar harvesting circuit that can simultaneously harvest power from solar and radio frequency (RF) sources readily available in the surrounding environment. The proposed work utilizes stand-alone RF and solar harvester circuits to realize a hybrid harvester circuit. The stand-alone RF harvester circuit is a dual-band multi-stage harvester that has been designed to work at GSM 900 MHz and Wi-Fi/WLAN bands. The standalone solar harvester circuit comprises of a solar panel with inbuilt rectifier circuit. The output DC voltage is obtained across the load of the two harvester circuits. The load of the two stand-alone harvester circuits are connected in series to provide DC voltage addition ensuring maximum power transfer at the load resistance of the hybrid harvester circuit. The performance of hybrid circuit has been evaluated for outdoor environment at different times over a day. Even when there is a sudden drop in power coming from standalone RF or solar harvester circuit, the power of hybrid harvester circuit does not fall abruptly due to backup from other dominant harvester circuit. This avoids sudden drop in power requirement by a device ensuring its continued operation and safety.
机译:本文研究了混合RF-Solar收集电路的性能,该电路可以同时从周围环境中容易获得的太阳能和射频(RF)源中收集电力。拟议的工作利用独立的RF和太阳能采集器电路来实现混合式采集器电路。独立的RF采集器电路是双频段多级采集器,设计用于GSM 900 MHz和Wi-Fi / WLAN频段。独立的太阳能收集器电路包括带有内置整流器电路的太阳能电池板。在两个采集器电路的负载两端获得输出直流电压。两个独立收割机电路的负载串联连接,以提供直流电压附加,确保在混合收割机电路的负载电阻下实现最大的功率传输。混合电路的性能已在一天中的不同时间针对室外环境进行了评估。即使从独立的RF或太阳能收集器电路突然降低功率,混合式收集器电路的功率也不会由于从其他主要收集器电路中获得的备用而突然下降。这避免了设备的功率需求突然下降,从而确保了设备的持续运行和安全性。

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