2016
DOI: 10.1109/tia.2016.2591498
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Large-Scale Optimization of Synchronous Reluctance Machines Using CE-FEA and Differential Evolution

Abstract: A novel automated design optimization procedure based on the application of an ultra-fast computationally-efficient finite element method (CE-FEA) for current regulated synchronous reluctance machines supplied from power electronic converters is proposed. The CE-FEA uses only a minimum number of magnetostatic solutions in order to comprehensively evaluate performance, including ripple torque and core losses. The optimization algorithm is based on differential evolution and uses as independent variables the tor… Show more

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Cited by 36 publications
(10 citation statements)
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“…PMaSynRMs are nonlinear motors due to their strong magnetic saturation. Therefore, a significant effort was required to analyze these motors correctly [25]. In this process, the rotor design of the motor was improved by performing parametric analysis to obtain the desired high output torque and minimum torque ripple.…”
Section: Improvementmentioning
confidence: 99%
“…PMaSynRMs are nonlinear motors due to their strong magnetic saturation. Therefore, a significant effort was required to analyze these motors correctly [25]. In this process, the rotor design of the motor was improved by performing parametric analysis to obtain the desired high output torque and minimum torque ripple.…”
Section: Improvementmentioning
confidence: 99%
“…The differential evolution (DE) algorithm [19] is selected among the meta-heuristic optimisation algorithms because its effectiveness for problems related to the design of electrical machines was already proven in the literature [12,15,20].…”
Section: Optimisation Settingsmentioning
confidence: 99%
“…...O FIGURA DA FEM... A scalarization approach has been used to face with the multiobjective problem. The scalarization used is the following: (11) where the values of (•) base are some references values.…”
Section: A Vehicle and Road Modelmentioning
confidence: 99%