The aims of the IEEE CEFC are to present the latest developments in modeling and simulation methodologies for the analysis of electromagnetic fields and wave interactions, with the application emphasis being on the computer-aided design of low and high frequency devices, components and systems. Scientists and engineers worldwide are invited to submit original contributions in the conference areas. The authors are encouraged to submit a One-page Digest in the IEEE double column format. On-line submission is required and facilities are provided on the web site. The conference will feature oral and poster presentations. Authors interested in submitting their papers for review for publication in the IEEE Transactions on Magnetics are asked to submit their manuscripts in final form via the website and also bring a copy at the conference. All contributed papers will undergo peer review to determine their suitability for publication. Exhibits of commercial products will be available.
1. Static and Quasi-static Fields
(a) Electrostatics
(b) Magnetostatics
(c) Eddy Currents
(d) Numerical Methods
(e) Others
2. Wave Propagation
(a) Scattering
(b) Radiation
(c) Time and Frequency Domain
(d) Microwaves
(e) Antennas
(f) Numerical Methods
(g) Radiative Transfer
(h) Others
3. Material Modeling
(a) Superconducting Materials
(b) Composite Materials
(c) Hysteresis and Anisotropy
(d) Permanent Magnets
(e) Magnetostrictive or Piezoceramic Materials
(e) Microwave Absorbing Materials
(g) Ab-initio Quantum Mechanical Modeling
(h) Others
4. Coupled Problems (Electromagnetic Field Problems Coupled to):
(a) Mechanical Problems
(b) Electric Circuits
(c) Thermal Problems
(d) Micromagnetics
(h) Others
5. Numerical Techniques
(a) Mesh Generation and Adaptive Meshing
(b) Solving Linear Systems of Equations
(c) Eigenvalue Problems
(d) Nonlinear Problems
(e) Parallel and Vector Computations
(f) Others
6. Optimization and Design
(a) Sensitivity Analysis,
(b) Deterministic Methods,
(c) Stochastic Methods,
(d) Neural Networks,
(e) Artificial Intelligence and Expert Systems,
(f) Others
7. Software Methodology
(a) Software Design,
(b) Software Engineering and Software Quality
(c) Computer Graphics and Data Representation
(d) Man-machine Interfaces,
(e) Computer Aided Engineering in Classroom
(f) Others
8. Nanomagnetics
(a) Spintronis
(b) MEMS/NEMS
(c) Magnetic Recording
(d) MRAM
(e) Micromagnetics Modeling
(f) Ab-initio Magnetic Paranetics Calculating
(g) others
9. Nanophotonics
(a) Adaptive optics
(b) Optical Detectors
(c) Electro-optics
(d) Near Field Modeling
(e) Others
10. Bioelectric Field Computation
(a) Numerical Approximation
(b) Biomedical Signal Processing
(c) Three-dimensional Geometric Modeling
(d) Constrained Optimization
(e) Large Scale Computing
(f) Scientific Visualization
(g) Integrated Software Environments
(h) Others
11. Devices and Applications
(a) Electric Machines and Drives
(b) Nondestructive Testing
(c) Induction Heating,
(d) Power Electronics Devices
(e) Wave Guides
(f) Microwaves Resonators
(g) Magnetic Recording
(h) Microsystems
(i) Biomedical Applications
(j) Charged Particles Trajectories
(k) Accelerators
(l) Electromagnetic Launchers
(m) Fusion Machines
(n) Electromagnetic Compatibility
(o) Others
11月13日
2016
11月16日
2016
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