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Naslov: Development of mathematical models in explicit form for design and analysis of axial flux permanent magnet synchronous machines ID Pranjić, Franjo (Avtor)ID Virtič, Peter (Avtor) Development_of_mathematical_models_Pranjic_2020.pdf (2,70 MB)MD5: 48060596FC2F70302219B9FD058A8ECB  https://doi.org/10.3390/app10217695 Angleški jezik Znanstveno delo 1.01 - Izvirni znanstveni članek FE - Fakulteta za energetiko This article proposes a methodology for the design of double-sided coreless axial flux permanent magnet synchronous machines, which is based on a developed model for calculating the axial component of the magnetic flux density in the middle of the distance between opposite permanent magnets, which also represents the middle of the stator. Values for different geometric parameters represent the input data for the mathematical model in explicit form. The input data are calculated by using a simplified finite element method (FEM), which means that calculations of simplified 3D models are performed. The simplified model consists of two rotor disks with surfacemounted permanent magnets and air between them, instead of stator windings. Such a simplification is possible due to similar values of permeability of the air and copper. For each simplified model of the machine the axial component of the magnetic flux density is analyzed along a line passing through the center of opposite permanent magnets and both rotor disks. Values at the middle of the distance between the opposite permanent magnets are the lowest and are therefore selected for the input data at different stator, rotor disks and permanent magnets (PM) thicknesses. Such input data enable the model to consider the nonlinearity of materials. axial flux, analysis, coreless, development, design, explicit form, finite element method, mathematical models, permanent magnet, synchronous Objavljeno Objavljena publikacija 05.10.2020 21.10.2020 30.10.2020 MDPI 2020 Str. 1-17 Letn. 10, Št. 21, št. članka 7695 20.500.12556/DKUM-86447 620.1/.2 35220227 10.3390/app10217695 2076-3417 01.12.2023 293 10 Ostalo Kopiraj citat

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Naslov: Applied sciences Appl. sci. MDPI 2076-3417 522979353

## Licence

Licenca: CC BY 4.0, Creative Commons Priznanje avtorstva 4.0 Mednarodna http://creativecommons.org/licenses/by/4.0/deed.sl To je standardna licenca Creative Commons, ki daje uporabnikom največ možnosti za nadaljnjo uporabo dela, pri čemer morajo navesti avtorja. 30.10.2020

## Sekundarni jezik

Jezik: Slovenski jezik tok, analiza, razvoj, načrt, eksplicitna oblika, metoda končnih elementov, matematični modeli, trajni magnet, sinhronost

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