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Title: Axial Asynchronous Motor With A Rotor Two-section Cone-cylindrical Magnetic Circuit
Authors: Ставинський, Андрій Андрійович
Stavinskiy, Andrey
Шебанін, В’ячеслав Сергійович
Shebanin, Vyacheslav
Садовий, Олексій Степанович
Sadovoi, Alexei
Вахоніна, Лариса Володимирівна
Vakhonina, Larisa
Циганов, Олександр Миколайович
Tsyiganov, Aleksandr
Avdieieva, Elena
Keywords: Harmonic analysis
Induction motors
Magnetic fields
Rotors (windings)
Timing circuits
Additional moment
Asynchronous engines
conical-cylindrical magnetic conduit
Higher harmonics
Induction distribution
Short circuiting
Tangential displacements
tooth harmonics
Magnetic circuits
axial asynchronous motor
conical-cylindrical magnetic conduit
induction distribution
intermediate ring
rotor sections
tooth harmonics
Permanent Magnets
Synchronous Machine
Issue Date: 2019
Publisher: Mykolayiv National Agrarian University
Admiral Makarov National University of Shipbuilding
Citation: Stavinskii, A., Shebanin, V., Avdieieva, E., Sadovoy, O., Vakhonina, L., & Tsyganov, A. (2019). Axial Asynchronous Motor With A Rotor Two-section Cone-cylindrical Magnetic Circuit. IEEE International Conference on Modern Electrical and Energy Systems (MEES), Kremenchuk, Ukraine, 106-109, doi: 10.1109/MEES.2019.8896477.
Abstract: The possibilities of improving the axial asynchronous engine by formation of two-section magnetic circuit and rotor winding with radial conical surfaces of teeth, tangential displacement of the core parts of sections and intermediate short-circuiting rings are shown. The displacement of the core sections of winding within of the toothed division limits is equivalent to the slots slope of machines with a cylindrical gap and weakens the electromotive forces and additional moments from the higher harmonics of the magnetic field. The condition for sectional components of the rotor currents compensation from the magnetic field toothed harmonics is obtained.
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