核转染
反射减退
妊娠期
TSG101型
传票
液化
肾小管病变
关节软骨损伤
渗滤
易熔合金
蛋白质基因组学
作者
Ahmed Rifaat Hamad,Ammar Al‐Adhami,Nouf Abd Elmunim,Mohammad Alibakhshikenari,Bal S. Virdee,Hasan Salman Hamad,Renu Karthick Rajaguru Jayanthi,Dion Mariyanayagam,Innocent Lubangakene,Sunil Kumar,Salahuddin Khan,Yi Tang,Lida Kouhalvandi,Taha A. Elwi,M. Ahmed,Nasr Rashid
摘要
Abstract This paper presents a novel rectenna design for hybrid energy harvesting, optimized using a binary genetic algorithm (BGA) with binary coding to improve geometry, impedance matching, and radiation efficiency. The fabricated rectenna achieves reflection coefficients below −40 dB at 2.45 and 5.8 GHz, demonstrating excellent impedance matching. A commercial rectifier (Powercast P21XXCSR‐EVB), employing a voltage doubler topology and Schottky diodes (Skyworks SMS7630 and Avago HSMS 285B), is integrated for RF‐to‐DC conversion. Peak efficiencies of 90% at 2.45 GHz and 52% at 5.8 GHz are recorded at 11 dBm input power, while efficiencies above 80% and 50%, respectively, are maintained at 0 dBm. The rectifier also exhibits wide impedance bandwidths, with reflection coefficients of −23 dB and −18 dB at the respective frequencies. Outdoor testing yields DC output voltages of 92.6 mV (2.45 GHz) and 64 mV (5.8 GHz). The system's efficiency and adaptability under variable conditions make it ideal for low‐power applications such as wireless sensor networks, Internet of Things devices, and remote monitoring. Its robust performance across environments highlights its potential for autonomous energy harvesting in 5G and sub‐6 GHz networks.
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