Capek, M., Jelinek, L., Masek, M.: Optimality of Total Active Reflection Coefficient and Realized Gain for Multi-port Lossy Antennas, pp.Masek, M., Jelinek, L., Capek, M.: Excitation Schemes of Uncorrelated Channels, pp. ![]() List of publications where AToM was cited. Current examples are based on AToM functions evaluating the MoM matrices, however, the core functions of the package are standalone and can be also used with user supplied matrices. The package also allows to setup partial control over the total degrees of freedom using separation into the controllable and uncontrollble regions. Many standard optimization problems (e.g., minimum Q-factor, maximum radiation efficiency, maximum gain) are already implemented in the package as examples. AToM can be used to compute the matrices, utilizing either volumetric MoM or surface equivalence MoM. A typical workflow contains definition of the optimization problem, evaluation of required method-of-moments (MoM) matrices, and initialization of an appropriate solver. Fundamental BoundsįunBo is a package for the computation of physical limitations on selected electromagnetic metrics based on linear or quadratic forms. ![]() ![]() Graphical results exported with AToM2TikZ addon. L-shape plate is made of copper, electrical size is ka=1/2. Optimal current for maximal radiation efficiency with self-resonant constraint.
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