TELKOMNIKA (Telecommunication Computing Electronics and Control)
Vol 16, No 1: February 2018

Reduction of Mutual Coupling between Closely Spaced Microstrip Antennas Arrays Using Electromagnetic Band-gap (2D-EBG) Structures

Ahmed Ghaloua (LMEET Laboratory FST of Settat Hassan 1st University)
Jamal Zbitou (LMEET Laboratory FST of Settat Hassan 1st University)
Larbi El Abdellaoui (LMEET Laboratory FST of Settat Hassan 1st University)
Mohamed Latrach (Microwave group ESEO Angers France)
Abdelali Tajmouati (LMEET Laboratory FST of Settat Hassan 1st University)
Ahmed Errkik (LMEET Laboratory FST of Settat Hassan 1st University)



Article Info

Publish Date
01 Feb 2018

Abstract

Reducing mutual coupling is a key research area in design of compact microstrip antennas arrays. To minimize the overall size of the antennas arrays, the distance between them must be very small, as a result a strong mutual coupling is appears. Periodic structures can help to design a low profile of antennas arrays and enable to improve their performances by the suppression of surface waves propagation in a given frequency range. This paper proposes a novel configuration of mushroom-like electromagnetic band-gap (2D-EBG) structure created by microstrip technology placed between two antennas arrays to reduce the mutual coupling more than -33.24dB. When 13×2 EBG structures are used, the mutual coupling reduces to -59.36dB at the operation frequency 5.8GHz of the antennas arrays. A 26.12dB mutual coupling reduction is achieved, which proves that the surface wave is suppressed. The proposed configuration is designed, optimized, and miniaturized by using electromagnetic software CST Microwave Studio. The measured results show that there is a good agreement with the computed results.

Copyrights © 2018






Journal Info

Abbrev

TELKOMNIKA

Publisher

Subject

Computer Science & IT

Description

Submitted papers are evaluated by anonymous referees by single blind peer review for contribution, originality, relevance, and presentation. The Editor shall inform you of the results of the review as soon as possible, hopefully in 10 weeks. Please notice that because of the great number of ...