Title :
Motoring performance of a conical pole-pair separated bearingless electric machine
Author :
Kascak, Peter ; Jansen, Ralph ; Dever, Timothy ; Nagorny, Aleksandr ; Loparo, Kenneth
Author_Institution :
NASA Glenn Res. Center, Cleveland, OH, USA
Abstract :
In standard motor applications, traditional mechanical bearings represent the most economical approach to rotor suspension. However, in certain high performance applications, rotor suspension without bearing contact is either required or highly beneficial. Such applications include very high speed, extreme environment, or limited maintenance access applications. This paper presents a novel bearingless motor concept, in which full five-axis levitation and rotation of the rotor is achieved using two motors with opposing conical air-gaps. By leaving the motors´ pole-pairs unconnected, different d-axis flux in each pole-pair is created, generating a flux imbalance which creates lateral force. Note this is approach is different than that used in previous bearingless motors, which use separate windings for levitation and rotation. This paper will examine the predicted and achieved motor performance of a prototype bearingless system, which was sized for a high speed flywheel energy storage application.
Keywords :
electric machines; machine windings; magnetic levitation; suspensions (mechanical components); conical pole-pair separated bearingless electric machine; five-axis levitation; flux imbalance; flywheel energy storage; lateral force; levitation; maintenance access; mechanical bearings; motoring performance; rotor suspension; standard motor applications; windings; Inductance; Induction motors; Levitation; Permanent magnet motors; Reluctance motors; Rotors; Energy Conversion; Energy Storage; Flywheels; Magnetic Levitation; Motor Drives; Motors; Permanent Magnet Motors; Rotating Machines;
Conference_Titel :
Energytech, 2011 IEEE
Conference_Location :
Cleveland, OH
Print_ISBN :
978-1-4577-0777-3
Electronic_ISBN :
978-1-4577-0775-9
DOI :
10.1109/EnergyTech.2011.5948515