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What's New in EM.Cube R20.1?

140 bytes removed, 19:23, 30 March 2020
*New Python function for setting the RMS height of rough Earth surface
=== New EM.Ferma Illumina (StaticPhysical Optics) Features ===
=== *New EM.Picasso improved formulation of lossy dielectric surfaces and dielectric-coated PEC objects based on the method of equivalent current approximation (Planar MoMMECA) Features ===*New Gaussian beam sources*Huygens source arrays with amplitude and phase distribution*New polarimetric scattering matrix sweep simulation as a special type of the RCS observable
*Improved planar mesh generation for structures with vertical vias of irregular shape and arrays of via objects *New capability of handling edge vias and short thin vertical walls (fins)  === New EM.Illumina Picasso (Planar MOM) and EM.Libera (Physical OpticsSurface MoM & Wire MOM) Features ===
*New improved formulation source arrays of lossy dielectric strip gap, wire gap, probe gap and dielectric-coated PEC objects based on the method of equivalent current approximation (MECA)*New focused Gaussian beam source with higher-order Hermite-Gauss modal profile*New point transmitter source with user defined radiation pattern*Multi-transmitter source arrays scattering port types with phased array and AESA capability including classic weight distribution types (One-Parameter Taylor-Kaiser, Taylor N-bar, Bayliss N-bar, etc.) and user-defined complex weights*Huygens source arrays with user defined amplitude and phase distribution including classic weight distribution types (One-Parameter Taylor-Kaiser, Taylor N-bar, Bayliss N-bar, etc.) and user-defined complex weights*New option for PO input file to read mesh data from an external MATLAB-generated file
*New polarimetric scattering matrix sweep simulation as a special type of the RCS observable
*Improved radiation pattern and RCS observables with partial elevation and azimuth angle definitions
*Improved array factor definition for the radiation pattern observable with user defined amplitude and phase distribution including classic weight distribution types (One-Parameter Taylor-Kaiser, Taylor N-bar, Bayliss N-bar, etc.) and user-defined complex weights
=== New Miscellaneous CubeCAD Features ===
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