Multiband Patch Antenna Design Using Nature-Inspired Optimization Method

被引:41
|
作者
Boursianis A.D. [1 ]
Papadopoulou M.S. [1 ]
Pierezan J. [2 ]
Mariani V.C. [3 ]
Coelho L.S. [2 ,3 ]
Sarigiannidis P. [4 ]
Koulouridis S. [5 ]
Goudos S.K. [1 ]
机构
[1] ELEDIA@AUTH Research Group, School of Physics, Aristotle University of Thessaloniki, Thessaloniki
[2] Department of Electrical Engineering, Federal University of Parana, Curitiba
[3] Industrial and Systems Engineering Graduate Program and Mechanical Engineering Graduate Program, Pontifical Catholic University of Parana, Curitiba
[4] Department of Electrical and Computer Engineering, University of Western Macedonia, Kozani
[5] Electrical and Computer Engineering Department, University of Patras, Patras
关键词
Microstrip line; multiband antenna; optimization method; patch antenna; radio frequency energy harvesting;
D O I
10.1109/OJAP.2020.3048495
中图分类号
学科分类号
摘要
Radio frequency energy harvesting has attracted considerable interest as a technique of enabling self-powered wireless networks. This technique faces several challenges, such as the receiving and the rectifying modules of a rectenna system. Multiband antennas provide several comparative advantages against the goal of maximizing the amount of energy harvesting. In this work, we present a multiband microstrip patch antenna with three slits operating in the LoRaWAN (Long Range Wide Area Network) and the cellular (GSM-1800 and UMTS) communication frequency bands. A feasible solution of the antenna is obtained by the application of a recently introduced nature-inspired optimization technique, namely the Coyote Optimization Algorithm. The proposed antenna operates satisfactorily in the LoRaWAN (Long Range Wide Area Network) and the cellular (GSM-1800 and UMTS) communication frequency bands. Measured results of the proposed antenna exhibit an acceptable performance (multiband frequency operation, maximum gain of 3.94 dBi, broadside operation) and demonstrate features of operation, which make it a strong candidate for various RF energy harvesting applications. © 2020 IEEE.
引用
收藏
页码:151 / 162
页数:11
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