The magnetic model of synchronous machines is the relationship between the machine flux and machine current. knowing the machine magnetic model is fundamental for machine design evaluation and for optimal machine control. This paper presents an experimental approach for the magnetic model identification of any synchronous electrical machine. The presented procedure requires an inverter with current control, while the machine under test must be equipped with a position sensor. The proposed approach has been used with three different hardware platforms applied to four different synchronous machines.

The analysis of the solutions for harmonic elimination PWM bipolar waveform with a specialized differential evolution algorithm / Rosu, S.; C., Radoi; A., Florescu; Guglielmi, Paolo; Pastorelli, MICHELE ANGELO. - STAMPA. - (2012), pp. 814-821. ((Intervento presentato al convegno 2012 13th International Conference on Optimization of Electrical and Electronic Equipment (OPTIM) tenutosi a Brasov (Romania) nel 24-26 May 2012 [10.1109/OPTIM.2012.6231900].

The analysis of the solutions for harmonic elimination PWM bipolar waveform with a specialized differential evolution algorithm

GUGLIELMI, Paolo;PASTORELLI, MICHELE ANGELO
2012

Abstract

The magnetic model of synchronous machines is the relationship between the machine flux and machine current. knowing the machine magnetic model is fundamental for machine design evaluation and for optimal machine control. This paper presents an experimental approach for the magnetic model identification of any synchronous electrical machine. The presented procedure requires an inverter with current control, while the machine under test must be equipped with a position sensor. The proposed approach has been used with three different hardware platforms applied to four different synchronous machines.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2499373
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