An accurate fourier-series expansion for round-rotor electric machine permeance function including large eccentricity effects

Autor: Alberto Tessarolo, L. Branz, M. Bailoni, Claudio Bruzzese
Přispěvatelé: IEEE, Tessarolo, Alberto, Bruzzese, C., Branz, Lorenzo, Bailoni, Martino
Rok vydání: 2014
Předmět:
electric machines
round rotor machine
Engineering
geometry
media_common.quotation_subject
air-gap permeance function
Rotor eccentricity
Permeance
Approximation methods
permeance functions
inductance
law.invention
modelling
air gaps
symbols.namesake
Position (vector)
law
Taylor series
mutual phase inductances
Eccentricity (behavior)
Fourier series
media_common
electric machine modeling
Rotor (electric)
business.industry
Stators
self phase inductances
Mathematical analysis
Control engineering
Function (mathematics)
winding functions
Expression (mathematics)
rotors
Fourier series
air gaps
electric machines
geometry
inductance
modelling
rotors
Fourier-series expansion
air-gap permeance function
mutual phase inductances
permeance functions
rotor position
round rotor machine
round-rotor electric machine permeance function
self phase inductances
winding functions
Air gaps
Approximation methods
Fourier series
Rotors
Stators
Taylor series
Fourier series
Rotor eccentricity
electric machine modeling
permenance function

symbols
Fourier-series expansion
rotor position
business
round-rotor electric machine permeance function
permenance function
Zdroj: 2014 International Symposium on Power Electronics, Electrical Drives, Automation and Motion.
DOI: 10.1109/speedam.2014.6871975
Popis: One of the key tasks in the modeling of electric machines is the analytical expression of self and mutual phase inductances as a function of the rotor position. Winding and permeance functions are a powerful tool for this purpose. This paper investigates the expression of the air-gap permeance function for a round rotor machine subject to pronounced eccentricity. An expression is sought in the form of a Fourier series expansion in order to make it suitable for modeling purposes. Although derived through non trivial algebraic passages, the final expression proposed is proved to be accurate and computationally efficient as the theoretically infinite sums involved in it exhibit a very rapid convergence to their asymptotical values.
Databáze: OpenAIRE