Metamaterial inspired DNG superstrate for performance improvement of microstrip patch antenna array

Author:

Arora Chirag,Pattnaik Shyam S.,Baral Rudra Narayan

Abstract

To utilize the manipulation of wave properties by metamaterials, in this paper, a microstrip-fed patch antenna array, loaded with metamaterial superstrate, has been proposed. Under unloaded conditions, the conventional patch antenna array resonates at IEEE 802.16a 5.8 GHz Wi-MAX band with gain of 4.31 dBi and bandwidth of 425 MHz, whereas when each patch of this array is loaded with a metamaterial superstrate, composed with the pair of circular split ring resonators and wire strips, gain and bandwidth approaches to 11.9 dBi and 685 MHz, respectively, which corresponds to gain improvement by 7.6 dBi and bandwidth enhancement of 260 MHz. The proposed antenna is fabricated and tested to compare simulated and measured results. A good compliance is observed between these two results. Equivalent circuit model of the composite structure has been developed and analyzed.

Publisher

Cambridge University Press (CUP)

Subject

Electrical and Electronic Engineering

Cited by 13 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. Single Layer Metamaterial Superstrate for Gain Enhancement of A Microstrip Antenna Array;Diyala Journal of Engineering Sciences;2024-06-07

2. Compact Conformal UWB Antenna Design with Enhanced Gain Characteristics Using Double-Negative (DNG) Metamaterial Structure for Biomedical Applications;Journal of The Institution of Engineers (India): Series B;2023-11-08

3. Improved Radiation Characteristics of 1×3 Series Fed MSA Array using Metamaterials for 5G Application;2023 First International Conference on Advances in Electrical, Electronics and Computational Intelligence (ICAEECI);2023-10-19

4. DNG Metamaterial-Based Superstrate for Performance Enhancement of Compact Size Wideband Patch Antenna;IETE Technical Review;2023-06-11

5. Millimeter Wave MPA using Metamaterial-Substrate Antenna Array for Gain Enhancement;2023 National Conference on Communications (NCC);2023-02-23

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