Qiang Ren Yinpeng Wang Yongzhong Li Shutong Qi Ren Sophisticated Electromagnetic Forward Scattering Solver via Deep Learning

Sophisticated Electromagnetic Forward Scattering Solver via Deep Learning

von Qiang Ren Yinpeng Wang Yongzhong Li Shutong Qi

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Beschreibung

This book investigates in detail the deep learning (DL) techniques in electromagnetic (EM) near-field scattering problems, assessing its potential to replace traditional numerical solvers in real-time forecast scenarios. Studies on EM scattering problems have attracted researchers in various fields, such as antenna design, geophysical exploration and remote sensing. Pursuing a holistic perspective, the book introduces the whole workflow in utilizing the DL framework to solve the scattering problems. To achieve precise approximation, medium-scale data sets are sufficient in training the proposed model. As a result, the fully trained framework can realize three orders of magnitude faster than the conventional FDFD solver. It is worth noting that the 2D and 3D scatterers in the scheme can be either lossless medium or metal, allowing the model to be more applicable. This book is intended for graduate students who are interested in deep learning with computational electromagnetics, professional practitioners working on EM scattering, or other corresponding researchers.
This book investigates in detail the deep learning (DL) techniques in electromagnetic (EM) near-field scattering problems, assessing its potential to replace traditional numerical solvers in real-time forecast scenarios. Studies on EM scattering problems have attracted researchers in various fields, such as antenna design, geophysical exploration and remote sensing. Pursuing a holistic perspective, the book introduces the whole workflow in utilizing the DL framework to solve the scattering problems. To achieve precise approximation, medium-scale data sets are sufficient in training the proposed model. As a result, the fully trained framework can realize three orders of magnitude faster than the conventional FDFD solver. It is worth noting that the 2D and 3D scatterers in the scheme can be either lossless medium or metal, allowing the model to be more applicable. This book is intended for graduate students who are interested in deep learning with computational electromagnetics, professional practitioners working on EM scattering, or other corresponding researchers.
Introduces a complete workflow in constructing a deep learning framework to predict the scattering fields Provides a guidance of building and validating the 2-D and 3-D electromagnetics dataset Provides a pre-experimental basis for the selection of network hyperparameters, split ratios and activation functions

Autor*in

Qiang Ren

Themen in »Sophisticated Electromagnetic Forward Scattering Solver via Deep Learning«

Deep learning Computational electromagnetics Electromagnetic Scattering U-net Forward modeling Finite-Difference Frequency-Domain method Electromagnetic Forward Scattering Solver

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Details

ISBN: 9789811662638
Verlag: Springer Singapore
Erscheinung: 21.10.2022

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