Implementation of a New and Modified Scheme of Butler Matrix for C-Band Applications with Enhanced Characteristics

In this paper, the structure of a miniaturized broadband 4 × 4 Butler matrix is presented. All components of the proposed feeding network are designed in a way that they have the smallest electrical size and acceptable performance in the C band. Despite conventional Butler matrix consists of phase s...

Full description

Bibliographic Details
Main Authors: M. Maleki, J. Nourinia, Ch. Ghobadi, R. Naderali
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2020-06-01
Series:Radioengineering
Subjects:
Online Access:https://www.radioeng.cz/fulltexts/2020/20_02_0328_0335.pdf
id doaj-8d70ebb3afd648d1849270b8ac8bd0db
record_format Article
spelling doaj-8d70ebb3afd648d1849270b8ac8bd0db2020-11-25T02:48:49ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122020-06-01292328335Implementation of a New and Modified Scheme of Butler Matrix for C-Band Applications with Enhanced CharacteristicsM. MalekiJ. NouriniaCh. GhobadiR. NaderaliIn this paper, the structure of a miniaturized broadband 4 × 4 Butler matrix is presented. All components of the proposed feeding network are designed in a way that they have the smallest electrical size and acceptable performance in the C band. Despite conventional Butler matrix consists of phase shifters, the proposed network benefits from dummy crossover, which leads to improving the phase difference bandwidth. Since in beam switching networks, 90° coupler has a vital role, the main focus is concentrated on the aforementioned component as mentioned above. The compactness of the proposed coupler is associated with embedding the S-shaped arms instead of ordinary elements. Due to overcoming the problem of a mismatch phase difference between phase shifter and crossover, the modified dummy crossover is used. In order to improve the overall performance of the depicted feeding network, S-shaped electromagnetic bandgap structures are used between elements. They reduce destructive mutual coupling effect hence leads to enhance total network efficiency. The extracted results determine that the bandwidth of the presented network is from 3.5 ~ 8.2 GHz that covers the C band totally.https://www.radioeng.cz/fulltexts/2020/20_02_0328_0335.pdfbutler matrixcouplerbroadbandelectromagnetic band gap
collection DOAJ
language English
format Article
sources DOAJ
author M. Maleki
J. Nourinia
Ch. Ghobadi
R. Naderali
spellingShingle M. Maleki
J. Nourinia
Ch. Ghobadi
R. Naderali
Implementation of a New and Modified Scheme of Butler Matrix for C-Band Applications with Enhanced Characteristics
Radioengineering
butler matrix
coupler
broadband
electromagnetic band gap
author_facet M. Maleki
J. Nourinia
Ch. Ghobadi
R. Naderali
author_sort M. Maleki
title Implementation of a New and Modified Scheme of Butler Matrix for C-Band Applications with Enhanced Characteristics
title_short Implementation of a New and Modified Scheme of Butler Matrix for C-Band Applications with Enhanced Characteristics
title_full Implementation of a New and Modified Scheme of Butler Matrix for C-Band Applications with Enhanced Characteristics
title_fullStr Implementation of a New and Modified Scheme of Butler Matrix for C-Band Applications with Enhanced Characteristics
title_full_unstemmed Implementation of a New and Modified Scheme of Butler Matrix for C-Band Applications with Enhanced Characteristics
title_sort implementation of a new and modified scheme of butler matrix for c-band applications with enhanced characteristics
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2020-06-01
description In this paper, the structure of a miniaturized broadband 4 × 4 Butler matrix is presented. All components of the proposed feeding network are designed in a way that they have the smallest electrical size and acceptable performance in the C band. Despite conventional Butler matrix consists of phase shifters, the proposed network benefits from dummy crossover, which leads to improving the phase difference bandwidth. Since in beam switching networks, 90° coupler has a vital role, the main focus is concentrated on the aforementioned component as mentioned above. The compactness of the proposed coupler is associated with embedding the S-shaped arms instead of ordinary elements. Due to overcoming the problem of a mismatch phase difference between phase shifter and crossover, the modified dummy crossover is used. In order to improve the overall performance of the depicted feeding network, S-shaped electromagnetic bandgap structures are used between elements. They reduce destructive mutual coupling effect hence leads to enhance total network efficiency. The extracted results determine that the bandwidth of the presented network is from 3.5 ~ 8.2 GHz that covers the C band totally.
topic butler matrix
coupler
broadband
electromagnetic band gap
url https://www.radioeng.cz/fulltexts/2020/20_02_0328_0335.pdf
work_keys_str_mv AT mmaleki implementationofanewandmodifiedschemeofbutlermatrixforcbandapplicationswithenhancedcharacteristics
AT jnourinia implementationofanewandmodifiedschemeofbutlermatrixforcbandapplicationswithenhancedcharacteristics
AT chghobadi implementationofanewandmodifiedschemeofbutlermatrixforcbandapplicationswithenhancedcharacteristics
AT rnaderali implementationofanewandmodifiedschemeofbutlermatrixforcbandapplicationswithenhancedcharacteristics
_version_ 1724746492701310976