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Design and implementation of a dual band bioinspired leaf rectenna for RF energy harvesting applications

机译:用于RF能量收集应用的双带生物悬浮叶片嵌入式的设计与实现

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摘要

In this article, both design and implementation of a novel Omni-directional bioinspired Linden leaf-shaped rectenna are reported. The antenna is designed for the energy harvesting purposes under the operation frequency range between 1.6 and 2.65 GHz with a second harmonic rejection property. At the rectifier stage, voltage doubler circuit is designed and implemented with the help of microstrip transmission lines, which are used for impedance matching procedure between the antenna and the rectifier for the optimum power transfer from the antenna to the load for the operation dual bands of universal mobile telecommunication service and WIFI. In the design, SMS7630Schottky diodes, high frequency capacitors and inductors are used as the main surface mount devices. The FR4 epoxy material is selected as a substrate material for both the antenna and the rectifier circuit due to its low cost and easy— production scheme. The maximum efficiency value realized at the dual band operation is 42% at the 0 dBm input power level. The output voltage value and the harvested power at this point are nearly 960 mV and 0.42 mW with an optimum load R_L = 2.2 KOhm. The implemented system can be used efficiently for the RF energy harvesting applications for the proposed frequency bands.
机译:在本文中,报道了新型全向生物悬浮林登叶形叶形叶片形叶片的设计和实施。天线设计用于电动频率范围内的能量收集目的,其具有第二次谐波抑制性能的1.6和2.65GHz。在整流级,电压倍增器电路是在微带传输线的帮助下设计和实现的,用于在天线和整流器之间的阻抗匹配过程,用于从天线到负载的最佳功率转移到操作双频带的负载通用移动电信服务和WiFi。在设计中,SMS7630Schottky二极管,高频电容器和电感器用作主表面安装装置。由于其低成本和易于生产方案,选择FR4环氧材料作为天线和整流电路的基板材料。在0 dBm输入功率电平,在双频频率操作中实现的最大效率值为42%。此时的输出电压值和收获功率接近960 mV和0.42mW,最佳载荷R_L = 2.2 kohm。实现的系统可以有效地用于所提出的频带的RF能量收集应用。

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