Optimization of permanent magnet assisted synchronous reluctant motor (PMa-SynRM) employing high-strength rotor lamination NiMark 300 alloy
Longares Conejo, Alejandro
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https://hdl.handle.net/2142/107284
Description
Title
Optimization of permanent magnet assisted synchronous reluctant motor (PMa-SynRM) employing high-strength rotor lamination NiMark 300 alloy
Author(s)
Longares Conejo, Alejandro
Contributor(s)
Haran, Kiruba Sivasubramaniam
Issue Date
2020-05
Keyword(s)
ferrite magnets
high strength lamination
torque performance
bridge sizing
electromagnetic simulation
Abstract
Energy storage improvement for electric mobility has become trending topic in I+D, whereas electric
machinery performance has been left aside due to its enormous technology advances during the
last two decades, even though it has still a wide range of improvement. This thesis investigates
the potential of improved performance of a Permanent Magnet Assisted Synchronous Reluctance
Motor (PMa-SynRM) considering an unusual material for its lamination. The significant feature of
this proposed material is its great mechanical properties which enable rotor lamination designs
better suited for high-speed synchronous reluctance motors. However, the material is relatively
poor in magnetic capability. Hence, a detailed electromagnetic and mechanical analysis has to be
performed to understand the net benefit of employing this material. Three different rotors with same
shaft and outside dimensions have been designed to test electromagnetic efficiency and mechanical
resistance by the finite-element method. Torque, total reactance, flux density and magnetic field can
be evaluated to conclude if this material with its respective modifications provides a better overall
performance as well as higher power density to improve electric mobility through electric traction
performance.
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