Identification and non-integer order modelling of synchronous machines operating as generator

Main Article Content

Sz. Racewicz

Abstract


This paper presents an original mathematical model of a synchronous generator using derivatives of fractional order. In contrast to classical models composed of a large number of R-L ladders, it comprises half-order impedances, which enable the accurate description of the electromagnetic induction phenomena in a wide frequency range, while minimzing the order and number of model parameters. The proposed model takes into account the skin eff ect in damper cage bars, the eff ects of eddy currents in rotor solid parts, and the saturation of the machine magnetic circuit. The half-order transfer functions used for modelling these phenomena were verifi ed by simulation of ferromagnetic sheet impedance using the fi nite elements method. The analysed machine’s parameters were identifi ed on the basis of SSFR (StandStill Frequency Response) characteristics measured on a gradually magnetised synchronous machine.


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How to Cite
Sz. Racewicz. (2012). Identification and non-integer order modelling of synchronous machines operating as generator. Acta Energetica, (03), 75–84. https://doi.org/10.52710/ae.255
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References

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