Multi-Objective Synthesis of Filtering Dipole Array Based on Tuning-Space Mapping

In the paper, we apply tuning-space mapping to multi-objective synthesis of a filtering antenna. The antenna is going to be implemented as a planar dipole array with serial feeding. Thanks to the multi-objective approach, we can deal with conflicting requirements on gain, impedance matching, side-lo...

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Main Authors: P. Vsetula, Z. Raida, J. Lacik
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2015-09-01
Series:Radioengineering
Subjects:
Online Access:http://www.radioeng.cz/fulltexts/2015/15_03_0688_0694.pdf
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spelling doaj-494d5168918f4e5b8656bff48ccf9a9e2020-11-25T01:02:11ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122015-09-01243688694Multi-Objective Synthesis of Filtering Dipole Array Based on Tuning-Space MappingP. VsetulaZ. RaidaJ. LacikIn the paper, we apply tuning-space mapping to multi-objective synthesis of a filtering antenna. The antenna is going to be implemented as a planar dipole array with serial feeding. Thanks to the multi-objective approach, we can deal with conflicting requirements on gain, impedance matching, side-lobe level, and main-lobe direction. MOSOMA algorithm is applied to compute Pareto front of optimal solutions by changing lengths of dipoles and parameters of transmission lines connecting them into a serial array. Exploitation of tuning space mapping significantly reduces CPU-time demands of the multi-objective synthesis: a coarse optimization evaluates objectives using a wire model of the filtering array (4NEC2, method of moments), and a fine optimization exploits a realistic planar model of the array (CST Microwave Studio, finite integration technique). The synthesized filtering antenna was manufactured, and its parameters were measured to be compared with objectives. The number of dipoles in the array is shown to influence the match of measured parameters and objectives.http://www.radioeng.cz/fulltexts/2015/15_03_0688_0694.pdfDipole antenna arrayfiltering antennafiltennamulti-objective optimizationtuning-space mapping
collection DOAJ
language English
format Article
sources DOAJ
author P. Vsetula
Z. Raida
J. Lacik
spellingShingle P. Vsetula
Z. Raida
J. Lacik
Multi-Objective Synthesis of Filtering Dipole Array Based on Tuning-Space Mapping
Radioengineering
Dipole antenna array
filtering antenna
filtenna
multi-objective optimization
tuning-space mapping
author_facet P. Vsetula
Z. Raida
J. Lacik
author_sort P. Vsetula
title Multi-Objective Synthesis of Filtering Dipole Array Based on Tuning-Space Mapping
title_short Multi-Objective Synthesis of Filtering Dipole Array Based on Tuning-Space Mapping
title_full Multi-Objective Synthesis of Filtering Dipole Array Based on Tuning-Space Mapping
title_fullStr Multi-Objective Synthesis of Filtering Dipole Array Based on Tuning-Space Mapping
title_full_unstemmed Multi-Objective Synthesis of Filtering Dipole Array Based on Tuning-Space Mapping
title_sort multi-objective synthesis of filtering dipole array based on tuning-space mapping
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2015-09-01
description In the paper, we apply tuning-space mapping to multi-objective synthesis of a filtering antenna. The antenna is going to be implemented as a planar dipole array with serial feeding. Thanks to the multi-objective approach, we can deal with conflicting requirements on gain, impedance matching, side-lobe level, and main-lobe direction. MOSOMA algorithm is applied to compute Pareto front of optimal solutions by changing lengths of dipoles and parameters of transmission lines connecting them into a serial array. Exploitation of tuning space mapping significantly reduces CPU-time demands of the multi-objective synthesis: a coarse optimization evaluates objectives using a wire model of the filtering array (4NEC2, method of moments), and a fine optimization exploits a realistic planar model of the array (CST Microwave Studio, finite integration technique). The synthesized filtering antenna was manufactured, and its parameters were measured to be compared with objectives. The number of dipoles in the array is shown to influence the match of measured parameters and objectives.
topic Dipole antenna array
filtering antenna
filtenna
multi-objective optimization
tuning-space mapping
url http://www.radioeng.cz/fulltexts/2015/15_03_0688_0694.pdf
work_keys_str_mv AT pvsetula multiobjectivesynthesisoffilteringdipolearraybasedontuningspacemapping
AT zraida multiobjectivesynthesisoffilteringdipolearraybasedontuningspacemapping
AT jlacik multiobjectivesynthesisoffilteringdipolearraybasedontuningspacemapping
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