Improved wideband phase balancing SIW unequal power divider design for the low side‐lobe array antennas

Abstract In this paper, an eight‐way substrate integrated waveguide unequal power divider with an enhanced co‐phase bandwidth is presented, and demonstrated a potential application for the Ku‐band radiometer antennas. The proposed divider design is based on the −35 dB Chebyshev beam‐shaping algorith...

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Main Authors: Shahriar Hasan Shehab, Jiewei Feng, Nemai Karmakar, Emran Md Amin, Jeffrey Walker
Format: Article
Language:English
Published: Wiley 2021-02-01
Series:IET Microwaves, Antennas & Propagation
Online Access:https://doi.org/10.1049/mia2.12027
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spelling doaj-0436761cacec4d189fab2c82138acb382021-07-14T13:25:11ZengWileyIET Microwaves, Antennas & Propagation1751-87251751-87332021-02-0115211512210.1049/mia2.12027Improved wideband phase balancing SIW unequal power divider design for the low side‐lobe array antennasShahriar Hasan Shehab0Jiewei Feng1Nemai Karmakar2Emran Md Amin3Jeffrey Walker4Department of Electrical and Computer Systems Engineering Monash University Melbourne AustraliaDepartment of Electrical and Computer Systems Engineering Monash University Melbourne AustraliaDepartment of Electrical and Computer Systems Engineering Monash University Melbourne AustraliaAustralian Communications and Media Authority Melbourne AustraliaDepartment of Civil Engineering Monash University Melbourne AustraliaAbstract In this paper, an eight‐way substrate integrated waveguide unequal power divider with an enhanced co‐phase bandwidth is presented, and demonstrated a potential application for the Ku‐band radiometer antennas. The proposed divider design is based on the −35 dB Chebyshev beam‐shaping algorithm to achieve at minimum −25 dB of antenna side‐lobe level (SLL) and high beam efficiency (>90%). Investigations on different unequal power splitting techniques are discussed, and an efficient method for the unequal power division is proposed, exhibiting improved co‐phase bandwidth and wideband matching. The proposed unequal eight‐way power divider demonstrates a wider co‐phase bandwidth of 10% within 10° phase error and the −15 dB return loss bandwidth of 36.8%. Furthermore, the proposed unequal divider is integrated with eight longitudinal slot radiators, designed at 18.7 GHz and exhibits low radiation loss (better than −1.3 dB). The antenna measurement results exhibit a symmetrical fan beam radiation pattern and satisfied the goal of −25 dB SLL, resulting high beam efficiency of 97% and gain of 13.45 dBi. Therefore, the proposed unequal power divider technique shows the potential to be utilised in the low SLL antenna array designs for an accurate brightness temperature measurement of radiometer systems. The application of this technique can be further extended to radar and satellite/wireless communications.https://doi.org/10.1049/mia2.12027
collection DOAJ
language English
format Article
sources DOAJ
author Shahriar Hasan Shehab
Jiewei Feng
Nemai Karmakar
Emran Md Amin
Jeffrey Walker
spellingShingle Shahriar Hasan Shehab
Jiewei Feng
Nemai Karmakar
Emran Md Amin
Jeffrey Walker
Improved wideband phase balancing SIW unequal power divider design for the low side‐lobe array antennas
IET Microwaves, Antennas & Propagation
author_facet Shahriar Hasan Shehab
Jiewei Feng
Nemai Karmakar
Emran Md Amin
Jeffrey Walker
author_sort Shahriar Hasan Shehab
title Improved wideband phase balancing SIW unequal power divider design for the low side‐lobe array antennas
title_short Improved wideband phase balancing SIW unequal power divider design for the low side‐lobe array antennas
title_full Improved wideband phase balancing SIW unequal power divider design for the low side‐lobe array antennas
title_fullStr Improved wideband phase balancing SIW unequal power divider design for the low side‐lobe array antennas
title_full_unstemmed Improved wideband phase balancing SIW unequal power divider design for the low side‐lobe array antennas
title_sort improved wideband phase balancing siw unequal power divider design for the low side‐lobe array antennas
publisher Wiley
series IET Microwaves, Antennas & Propagation
issn 1751-8725
1751-8733
publishDate 2021-02-01
description Abstract In this paper, an eight‐way substrate integrated waveguide unequal power divider with an enhanced co‐phase bandwidth is presented, and demonstrated a potential application for the Ku‐band radiometer antennas. The proposed divider design is based on the −35 dB Chebyshev beam‐shaping algorithm to achieve at minimum −25 dB of antenna side‐lobe level (SLL) and high beam efficiency (>90%). Investigations on different unequal power splitting techniques are discussed, and an efficient method for the unequal power division is proposed, exhibiting improved co‐phase bandwidth and wideband matching. The proposed unequal eight‐way power divider demonstrates a wider co‐phase bandwidth of 10% within 10° phase error and the −15 dB return loss bandwidth of 36.8%. Furthermore, the proposed unequal divider is integrated with eight longitudinal slot radiators, designed at 18.7 GHz and exhibits low radiation loss (better than −1.3 dB). The antenna measurement results exhibit a symmetrical fan beam radiation pattern and satisfied the goal of −25 dB SLL, resulting high beam efficiency of 97% and gain of 13.45 dBi. Therefore, the proposed unequal power divider technique shows the potential to be utilised in the low SLL antenna array designs for an accurate brightness temperature measurement of radiometer systems. The application of this technique can be further extended to radar and satellite/wireless communications.
url https://doi.org/10.1049/mia2.12027
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