Special Sessions

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Special Session 1: Advanced Numerical Methods in Computational Electromagnetics

 

This session focuses on new developments for the numerical calculation of electromagnetic field problems across all frequency ranges. Numerical methods as the Finite Element Method (FEM), the Method of Moments (MoM), Finite Integration Technique (FIT), Discontinuous Galerkin (DG) applied to electromagnetic field problems as antenna radiation, wave propagation in waveguides, microwave circuits, electromagnetic compatibility, eddy currents, semiconductors, photonic crystals should be discussed.

 

Submission Link: https://www.zmeeting.org/submission/eems2027

 

Special Session Organizer

Prof. Georg Wimmer, Shenzhen Technology University, China

Email: georgwimmer@sztu.edu.cn
Research Areas: Computational Electromagnetics and Engineering, Numerical Mathematics, High Performance Computing

Dr. Georg Wimmer received his Ph.D. from the Munich Technical University, Germany in Numerical Mathematics. Later he worked as a research assistant at the Electrical Engineering Department of the University of the Federal Armed Forces in Hamburg, Germany. His professional career started as a senior research and development engineer at Ansoft Corporation and Ansys Inc. (today part of Synopsis) in Pittsburgh, USA. In 2012 he was appointed professor of numerical mathematics and mathematics at the Technical University of Applied Sciences Würzburg-Schweinfurt in Germany. From 2015 until 2022 he worked for the company ElectromagneticWorks, headquartered in Montréal, Canada in various positions as key developer, manager of the German office and director of research. Since 2023 he is a professor at the College of New Materials and New Energies at the Shenzhen Technology University in Shenzhen, China. His research interests are computational electromagnetics and engineering, numerical mathematics and high performance computing.

Recent publications:
- Georg Wimmer, Peigang Han, Zhizhong Wang, Huayue Chen, Simulation of High Voltage Insulators with Thin Material Surfaces using Higher Order Finite Elements, conference proceedings, 2026 International Conference on Electromagnetic Engineering & Microwave Systems, Chengdu, June 24-26, 2026.
- Georg Wimmer, Peigang Han, Stephan Wang, Artificial Intelligence in Computational Material Science: Diamond as Heat Spreader in High Power LED's, accepted at Kohlhammer publishing house, 2026.
- Georg Wimmer, Liyu Lin, Zhizhong Wan, Peigang Han, Formulations and Finite Element Discretization for Solving 2D Eddy Current Problems, International Journal of Applied Electromagnetics and Mechanics, vol. 77(4), 299-310, 2025. DOI: 10.1177/13835416251320231

Older publications:
- G. Wimmer, T. Steinmetz, M. Clemens, Reuse, Recycle, Reduce (3R) - Strategies for the Calculation of Transient Magnetic Fields, Applied Numerical Mathematics, vol 59(3-4), 830-844, 2009. DOI: 10.1016/j.apnum.2008.03.015.
- M. Clemens, J. Lang, D. Teleaga, G. Wimmer, Transient 3D Magnetic Field Simulation with Combined Space and Time Adaptivity for Lowest Order WFEM Formulations, IET Science, Measurement and Technology, vol. 3(6), pp. 1346-1349. DOI: 10.1109/TMAG.2008.915785
- G. Wimmer, T. Steinmetz, M. Clemens, Error Control Schemes for Adaptive Time Integration of Magnetodynamic
Systems with Variable Spatial Mesh Resolution, COMPEL, vol. 26(3), 758-772, 2007. DOI: 10.1108/03321640710751208