Přístupnostní navigace
E-application
Search Search Close
Publication detail
MIKULKA, J. DUŠEK, J. CHALUPA, D.
Original Title
Domain Shape Optimization in Electrical Impedance Tomography
Type
conference paper
Language
English
Original Abstract
This paper introduces the optimization of domain shape parameters in electrical impedance tomography-based imaging. Precise impedance reconstruction requires accurate, well-correlated physical and numerical finite element method (FEM) models; thus, we employed the Nelder-Mead algorithm and a complete electrode model to evaluate the domain shape deformation. The deformation of the originally circular model is defined by the size of the major and minor axes of the equivalent elliptical shape. The optimization process was designed to calculate the parameters of the numerical model before the image reconstruction begins. The models were verified via simulation and experimental measurement with adjacent strategy. The optimized model reduced the overall conductivity distribution error of 6.16%. The designed optimization process proved to be suitable for correlating the numerical and the physical models, and it also enabled us to effectively eliminate imaging uncertainties and artifacts.
Keywords
Electrodes, Electrical impedance tomography, Uncertainty, Random access memory, Conductivity, Nonhomogeneous media, Numerical models
Authors
MIKULKA, J.; DUŠEK, J.; CHALUPA, D.
Released
21. 11. 2021
ISBN
978-1-7281-7247-7
Book
Photonics & Electromagnetics Research Symposium (PIERS)
1559-9450
Periodical
Progress In Electromagnetics
State
United States of America
Pages from
2155
Pages to
2159
Pages count
5
BibTex
@inproceedings{BUT177477, author="Jan {Mikulka} and Jan {Dušek} and Daniel {Chalupa}", title="Domain Shape Optimization in Electrical Impedance Tomography ", booktitle="Photonics & Electromagnetics Research Symposium (PIERS)", year="2021", journal="Progress In Electromagnetics", pages="2155--2159", doi="10.1109/PIERS53385.2021.9694687", isbn="978-1-7281-7247-7", issn="1559-9450" }