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Enhanced Broadband RF Differential Rectifier Integrated with Archimedean Spiral Antenna for Wireless Energy Harvesting Applications

机译:集成了阿基米德螺旋天线的增强型宽带射频差分整流器用于无线能量收集应用

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摘要

This work addresses the design and implementation of a broadband differential rectifier (DR) combined with an Archimedean spiral dipole antenna (ASDA) for wireless power harvesting at low incident power densities below 200 μW/cm2. The proposed design exhibits an improved RF-DC conversion efficiency over a wide frequency range from 1.2 to 5 GHz. This frequency band is associated with several wireless communication services, for instance, ISM, WLAN, 5G, LTE, and GPS applications. The receiving planar ASDA exhibits circular polarization and has an average measured gain of 4.5 dBi from 1.2 to 5 GHz. To enable a wide operating bandwidth, the rectifier circuit is constituted by two architectures, designated A and B. Each scheme is designed to harvest power efficiently across a specific bandwidth. The optimal performance of both rectifiers are obtained using the nonlinear harmonic-balance simulations. The antenna–rectifier integration yields a compact rectenna with a high-efficiency performance over the intended bandwidth from 1.2 to 5 GHz for an input power of 9 dBm and terminal load resistance of 1 kΩ. The total measured RF-DC conversion efficiency is maintained above 30% across the entire frequency range with a peak value of 61% achieved at 1.2 GHz. In comparison with similar architectures, the proposed rectenna maintains a stable output efficiency despite the wide fluctuations in the input frequency and also has a minimum footprint size (58 × 55 mm2).
机译:这项工作解决了宽带差分整流器(DR)与阿基米德螺旋偶极天线(ASDA)结合使用的设计和实现,该技术可在200以下的低入射功率密度下进行无线功率收集[math xmlns:mml =“ http://www.w3 .org / 1998 / Math / MathML“ id =” mm1“ overflow =” scroll“> μ W / cm <数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm2”溢出=“ scroll”> 2 。所提出的设计在1.2至5 GHz的宽频率范围内均具有改进的RF-DC转换效率。该频段与多个无线通信服务相关,例如ISM,WLAN,5G,LTE和GPS应用程序。接收平面ASDA表现出圆极化,在1.2至5 GHz范围内的平均测量增益为4.5 dBi。为了实现较宽的工作带宽,整流器电路由两种架构(分别表示为A和B)组成。每种方案均旨在在特定带宽内有效地收集功率。使用非线性谐波平衡仿真可获得两个整流器的最佳性能。天线-整流器的集成产生了一个紧凑的整流天线,在9 dBm的输入功率和1 k的终端负载电阻下,可在1.2至5 GHz的预定带宽范围内具有高效率的性能。 Ω 。在整个频率范围内,测得的总RF-DC转换效率保持在30%以上,在1.2 GHz时达到61%的峰值。与类似的体系结构相比,尽管输入频率波动很大,但建议的整流天线仍保持稳定的输出效率,并且具有最小的占位面积(58×55 mm 2 )。

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