Accelerated current-driven multi-objective topology optimization for compact ultrawide-band MIMO antenna design

In this work, an accelerated current-driven multi-objective topology optimization method is proposed for compact high-isolation ultrawide-band (UWB) multiple input multiple output (MIMO) antenna design. The proposed method takes the current Pareto solutions as the centers to perform fuzzy clustering...

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Main Authors: Xia Yuan, Meng Wang, Jian Dong
Format: Article
Language:English
Published: Elsevier 2022-11-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844022028365
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author Xia Yuan
Meng Wang
Jian Dong
author_facet Xia Yuan
Meng Wang
Jian Dong
author_sort Xia Yuan
collection DOAJ
description In this work, an accelerated current-driven multi-objective topology optimization method is proposed for compact high-isolation ultrawide-band (UWB) multiple input multiple output (MIMO) antenna design. The proposed method takes the current Pareto solutions as the centers to perform fuzzy clustering (FC) and then drives the evolution of individuals in each cluster according to the current distribution characteristics of the clustering centers. Individuals in each cluster purposefully generate antennas with expected performance, thereby accelerating the process of optimization design. The proposed method uses about half the computational cost of traditional algorithms to design a compact (20 × 18 mm2) and high-isolation (>20 dB) UWB MIMO antenna. The proposed method provides a new way for accelerating multi-objective topology optimization with a high design degree of freedom. Also, the optimized antenna is a competitive candidate solution for UWB applications.
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spelling doaj.art-d5d9c2955417468cba918fe3ec179c312022-12-22T04:35:55ZengElsevierHeliyon2405-84402022-11-01811e11548Accelerated current-driven multi-objective topology optimization for compact ultrawide-band MIMO antenna designXia Yuan0Meng Wang1Jian Dong2School of Computer Science and Engineering, Central South University, Changsha 410075, ChinaSchool of Computer Science and Engineering, Central South University, Changsha 410075, ChinaCorresponding author.; School of Computer Science and Engineering, Central South University, Changsha 410075, ChinaIn this work, an accelerated current-driven multi-objective topology optimization method is proposed for compact high-isolation ultrawide-band (UWB) multiple input multiple output (MIMO) antenna design. The proposed method takes the current Pareto solutions as the centers to perform fuzzy clustering (FC) and then drives the evolution of individuals in each cluster according to the current distribution characteristics of the clustering centers. Individuals in each cluster purposefully generate antennas with expected performance, thereby accelerating the process of optimization design. The proposed method uses about half the computational cost of traditional algorithms to design a compact (20 × 18 mm2) and high-isolation (>20 dB) UWB MIMO antenna. The proposed method provides a new way for accelerating multi-objective topology optimization with a high design degree of freedom. Also, the optimized antenna is a competitive candidate solution for UWB applications.http://www.sciencedirect.com/science/article/pii/S2405844022028365Accelerated design methodCurrent-driven antenna designFuzzy clusteringMulti-objective topology optimization
spellingShingle Xia Yuan
Meng Wang
Jian Dong
Accelerated current-driven multi-objective topology optimization for compact ultrawide-band MIMO antenna design
Heliyon
Accelerated design method
Current-driven antenna design
Fuzzy clustering
Multi-objective topology optimization
title Accelerated current-driven multi-objective topology optimization for compact ultrawide-band MIMO antenna design
title_full Accelerated current-driven multi-objective topology optimization for compact ultrawide-band MIMO antenna design
title_fullStr Accelerated current-driven multi-objective topology optimization for compact ultrawide-band MIMO antenna design
title_full_unstemmed Accelerated current-driven multi-objective topology optimization for compact ultrawide-band MIMO antenna design
title_short Accelerated current-driven multi-objective topology optimization for compact ultrawide-band MIMO antenna design
title_sort accelerated current driven multi objective topology optimization for compact ultrawide band mimo antenna design
topic Accelerated design method
Current-driven antenna design
Fuzzy clustering
Multi-objective topology optimization
url http://www.sciencedirect.com/science/article/pii/S2405844022028365
work_keys_str_mv AT xiayuan acceleratedcurrentdrivenmultiobjectivetopologyoptimizationforcompactultrawidebandmimoantennadesign
AT mengwang acceleratedcurrentdrivenmultiobjectivetopologyoptimizationforcompactultrawidebandmimoantennadesign
AT jiandong acceleratedcurrentdrivenmultiobjectivetopologyoptimizationforcompactultrawidebandmimoantennadesign