Design Optimization and Analysis of a Synchronous Reluctance Machine for Fault-Tolerant Applications
Autor: | Alberto Bellini, Ambra Torreggiani, Matteo Davoli, Claudio Bianchini, Nicola Bianchi, Cristian Babetto |
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Přispěvatelé: | Babetto C., Bianchi N., Torreggiani A., Bianchini C., Davoli M., Bellini A. |
Jazyk: | angličtina |
Rok vydání: | 2019 |
Předmět: |
Optimization
Design Computer science Finite element analysi Finite Element Analysis Circuit faults Couplings Design Electrical Machines Fault-Tolerant Finite Element Analysis Magnetic Coupling Optimization Rotors Synchronous Reluctance Machines Torque Torque measurement Windings Synchronous reluctance machines 02 engineering and technology Torque measurement Fault (power engineering) 01 natural sciences law.invention Windings Electrical Machines law Control theory Electrical machine Electrical machines 0103 physical sciences 0202 electrical engineering electronic engineering information engineering Torque Fault-tolerant Reliability (statistics) 010302 applied physics Fault-Tolerant Finite element analysis Magnetic coupling Rotor (electric) Magnetic reluctance 020208 electrical & electronic engineering Work (physics) Circuit faults Fault tolerance Magnetic Coupling Electromagnetic coil Rotors Couplings Synchronous Reluctance Machines |
Popis: | This paper deals with the design and optimization of a synchronous reluctance machine with dual three-phase winding for fault-tolerant applications. The target is to investigate several design solutions, in terms of winding arrangements and machine geometry, to achieve a good drive system reliability both in healthy and faulty conditions. The fault reliability is evaluated in terms of torque quality, unbalanced force and magnetic coupling between the healthy and the faulty three-phase winding. In the first part of the work, two different optimization strategies of the rotor geometry are proposed and an optimal solution is selected. In the second part, the performance of the selected individual are evaluated in several healthy and faulty operating conditions to investigate the reliability of the proposed design procedure. |
Databáze: | OpenAIRE |
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