RF energy harvesting using a compact rectenna with an antenna array at 2.45 GHz for IoT applications

Author:

Pramono Subuh1ORCID,Shidiq Dwiki Dimas1,Ibrahim Muhammad Hamka1,Adriyanto Feri1,Hikmaturokhman Alfin2

Affiliation:

1. Department of Electrical Engineering , Universitas Sebelas Maret , Surakarta , Indonesia

2. Telecommunication Engineering , Institut Teknologi Telkom Purwokerto , Purwokerto , Indonesia

Abstract

Abstract This work addresses the design, fabrication, and implementation of an RF energy harvester 2.45 GHz using a compact rectenna. Our proposed rectenna focuses on development of an antenna array and rectifier circuit. The proposed rectenna is fabricated using FR4 substrate with its overall size of 12.24 cm × 18.17 cm with a thickness of 1.6 mm. The measured results show that a 10 dB bandwidth covering in 2374-2549 MHz (175 MHz) with center frequency 2415 MHz at S 11 of −18.2 dB. There is a bandwidth enhancement of 57.6% compared to the single antenna. Gaining of the antenna array is 6 dB that is double a single antenna gain. Spatial diversity technique in antenna array yields a bigger antenna gain thereby increasing the received power level. Experimental measurements are carried out that the rectenna is placed indoor (LOS) at 5 m and outdoor (NLOS) at 15 m. Furthermore, we also explore the rectifier circuit that to maximize the output voltage. The received RF power that transmitted from WiFi router is −55 dBm (0.15 nW/cm2) at 5 m and −59 dBm (0.06 nW/cm2) at 15 m, respectively. The output voltages are achieved that 1092.5 mV at a distance of 5 m (LOS) and 5.48 mV at a distance of 15 m (NLOS). The highest RF-DC conversion efficiency of our proposed rectenna reaches 77.6%. The rectenna potentially meets all requirements to power up the IoT applications.

Publisher

Walter de Gruyter GmbH

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Ultrawideband Magnetoelectric Dipole Liquid Dielectric Resonator Rectenna for RF Energy Harvesting System;IEEE Antennas and Wireless Propagation Letters;2024-07

2. Design and Performance Evaluation of RF Energy Harvester for Wearable Sensor Nodes;2024 IEEE Wireless Antenna and Microwave Symposium (WAMS);2024-02-29

3. RF Energy Harvesting Rectenna Using Triple Slotted Elliptical Patch Antenna And Small Rectifier: Empowering IoT Applications;2023 International Conference on Emerging Research in Computational Science (ICERCS);2023-12-07

4. Simulation Study of High Gain 2.45 GHz Wearable Microstrip Patch Antenna for WSN Applications;2023 2nd International Conference on Power Systems and Electrical Technology (PSET);2023-08-25

5. 3-D-Printed Dual-Band Rectenna System for Green IoT Application;IEEE Transactions on Circuits and Systems II: Express Briefs;2023-08

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