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RF Energy Harvesting System Based on an Archimedean Spiral Antenna for Low-Power Sensor Applications

机译:基于Archimedean螺旋天线的RF能量收集系统,用于低功耗传感器应用

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This paper presents a radiofrequency (RF) energy harvesting system based on an ultrawideband Archimedean spiral antenna and a half-wave Cockcroft-Walton multiplier circuit. The antenna was proved to operate from 350 MHz to 16 GHz with an outstanding performance. With its use, radio spectrum measurements were carried out at the Telecommunication Engineering School (Universidad Politecnica de Madrid) to determine the power level of the ambient signals in two different scenarios: indoors and outdoors. Based on these measurements, a Cockcroft-Walton multiplier and a lumped element matching network are designed to operate at 800 MHz and 900 MHz frequency bands. To correct the frequency displacement in the circuit, a circuit model is presented that takes into account the different parasitic elements of the components and the PCB. With an input power of 0 dBm, the manufactured circuit shows a rectifying efficiency of 30%. Finally, a test is carried out with the full RF energy harvesting system to check its correct operation. Thus, the RF system is placed in front of a transmitting Vivaldi antenna at a distance of 50 cm. The storage capacitor has a charge of over 1.25 V, which is enough to run a temperature sensor placed as the load to be supplied. This demonstrates the validity of the RF energy harvesting system for low-power practical applications.
机译:本文介绍了基于超广域带Archimedean螺旋天线的射频(RF)能量收集系统和半波Cockcroft-Walton乘法器电路。证明天线以350 MHz至16 GHz,具有出色的表现。利用其使用,在电信工程学校(UniversidadGolitecnica de Madrid)进行了无线电频谱测量,以确定两个不同场景中的环境信号的功率水平:室内和户外。基于这些测量,设计了一个CockCroft-Walton乘数和集总元件匹配网络,设计为800 MHz和900 MHz频段。为了校正电路中的频率位移,提出了一种电路模型,其考虑了组件和PCB的不同寄生元件。输入功率为0 dBm,制造电路显示了30%的整流效率。最后,使用完整的RF能量收集系统进行测试,以检查其正确操作。因此,将RF系统放置在距离50cm的距离的发送VivalDi天线的前面。存储电容具有超过1.25 V的电荷,足以运行作为要提供的负载的温度传感器。这证明了用于低功耗实用应用的RF能量收集系统的有效性。

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