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Yalçın, Nesibe
Ünaldı, Sibel
Bartos Ediboglu, Gaye
Petőné Csuka, Ildikó
2025-12-04T13:49:53Z
2025-12-04T13:49:53Z
2025
http://hdl.handle.net/20.500.14044/36363
This study presents an explainable surrogate modeling approach for predicting the absorption behavior of broadband THz metamaterial absorbers based on vanadium dioxide (VO2) by a Multi-Layer Perceptron (MLP) network. The proposed model was trained on an electromagnetic full- wave simulation dataset, which included design parameters and frequency, with the corresponding absorption as output. The MLP-based surrogate model was evaluated using performance metrics such as the coefficient of determination (R²), Mean Absolute Error (MAE), and Root Mean Squared Error (RMSE). Additionally, explainable artificial intelligence (XAI) methods were used to understand how the input parameters affect the absorption. Thus, the proposed model offers important clues regarding the physical relationship between design parameters and absorption performance. The results obtained indicate that the MLP model achieves high prediction accuracy. This approach offers a promising alternative for the design and optimization of next-generation THz absorber devices.hu_HU
dc.formatPDFhu_HU
enhu_HU
Explainable MLP-Based Surrogate Model for Predicting Terahertz Metamaterial Absorber Performancehu_HU
Open accesshu_HU
Óbudai Egyetemhu_HU
2025. November 13.hu_HU
Budapesthu_HU
Alba Regia Műszaki Karhu_HU
Óbudai Egyetemhu_HU
Műszaki tudományok - multidiszciplináris műszaki tudományokhu_HU
absorptionhu_HU
XAIhu_HU
metamaterialhu_HU
MLPhu_HU
SHAPhu_HU
surrogate modelinghu_HU
Terahertzhu_HU
Konferenciaközleményhu_HU
PROCEEDINGS of 20th International Symposium on Applied Informatics and Related Areashu_HU
local.tempfieldCollectionsKönyvrészletekhu_HU
10.12700/AIS.2025.002
2.hu_HU
Kiadói változathu_HU
4 p.hu_HU
AIS 2025 20th International Symposium on Applied Informatics and Related Areashu_HU
978-963-449-405-8hu_HU
Óbudai Egyetemhu_HU
Budapesthu_HU


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