Conference Paper/Proceeding/Abstract 443 views 65 downloads
Inverse design of electromagnetic devices using topological derivative method
Quantum Technology: Driving Commercialisation of an Enabling Science III
Swansea University Authors: Alan Amad , Lijie Li
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DOI (Published version): 10.1117/12.2645110
Abstract
An inverse design in electromagnetic method based on the topological derivative approach is presented. Topological derivative method is used to measure the sensitivity of a given functional with respect to an infinitesimal perturbation in a domain. The topological derivative concept has been success...
Published in: | Quantum Technology: Driving Commercialisation of an Enabling Science III |
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SPIE
2023
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http://dx.doi.org/10.1117/12.2645110 |
URI: | https://cronfa.swan.ac.uk/Record/cronfa63244 |
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v2 63244 2023-04-25 Inverse design of electromagnetic devices using topological derivative method fe2123481afa7460a369317354cba4ec 0000-0001-7709-5536 Alan Amad Alan Amad true false ed2c658b77679a28e4c1dcf95af06bd6 0000-0003-4630-7692 Lijie Li Lijie Li true false 2023-04-25 EEEG An inverse design in electromagnetic method based on the topological derivative approach is presented. Topological derivative method is used to measure the sensitivity of a given functional with respect to an infinitesimal perturbation in a domain. The topological derivative concept has been successfully applied in many relevant fields such as geophysics, multi-scale material design and inverse problems. In this work, to design the electromagnetic devices an objective function dependent on the scattering parameters is considered. Finally, numerical results are presented to illustrate the performance of the optimisation approach. Conference Paper/Proceeding/Abstract Quantum Technology: Driving Commercialisation of an Enabling Science III SPIE 11 1 2023 2023-01-11 10.1117/12.2645110 http://dx.doi.org/10.1117/12.2645110 COLLEGE NANME Electronic and Electrical Engineering COLLEGE CODE EEEG Swansea University A.A.S. Amad and L. Li gratefully acknowledge the financial support received from UKRI in the form of grant ST/T006455/1. The authors would like to thank Professor Lucas Heitzmann Gabrielli for the helpful comments and suggestions. 2023-05-24T10:10:48.5738243 2023-04-25T15:56:08.0935378 Faculty of Science and Engineering School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering Alan Amad 0000-0001-7709-5536 1 Lijie Li 0000-0003-4630-7692 2 63244__27257__e46c75c5fc464891a89d740ead46ce22.pdf 63244.pdf 2023-04-28T10:57:51.0299922 Output 347374 application/pdf Accepted Manuscript true false |
title |
Inverse design of electromagnetic devices using topological derivative method |
spellingShingle |
Inverse design of electromagnetic devices using topological derivative method Alan Amad Lijie Li |
title_short |
Inverse design of electromagnetic devices using topological derivative method |
title_full |
Inverse design of electromagnetic devices using topological derivative method |
title_fullStr |
Inverse design of electromagnetic devices using topological derivative method |
title_full_unstemmed |
Inverse design of electromagnetic devices using topological derivative method |
title_sort |
Inverse design of electromagnetic devices using topological derivative method |
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fe2123481afa7460a369317354cba4ec ed2c658b77679a28e4c1dcf95af06bd6 |
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fe2123481afa7460a369317354cba4ec_***_Alan Amad ed2c658b77679a28e4c1dcf95af06bd6_***_Lijie Li |
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Alan Amad Lijie Li |
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Alan Amad Lijie Li |
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Conference Paper/Proceeding/Abstract |
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Quantum Technology: Driving Commercialisation of an Enabling Science III |
publishDate |
2023 |
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Swansea University |
doi_str_mv |
10.1117/12.2645110 |
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SPIE |
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Faculty of Science and Engineering |
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School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Electronic and Electrical Engineering |
url |
http://dx.doi.org/10.1117/12.2645110 |
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description |
An inverse design in electromagnetic method based on the topological derivative approach is presented. Topological derivative method is used to measure the sensitivity of a given functional with respect to an infinitesimal perturbation in a domain. The topological derivative concept has been successfully applied in many relevant fields such as geophysics, multi-scale material design and inverse problems. In this work, to design the electromagnetic devices an objective function dependent on the scattering parameters is considered. Finally, numerical results are presented to illustrate the performance of the optimisation approach. |
published_date |
2023-01-11T10:10:47Z |
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1766766094727512064 |
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11.035634 |