2019
DOI: 10.21625/archive.v2i4.388
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On the Natural Frequency of Oscillations of Induction Motors

Abstract: For transient stability analysis, the rotor dynamics of the induction motor have to be included. These dynamics affect the system stability when severe disturbances hit it and cause frequency deviations. For large systems, frequency deviations are small. However, it may cause loss of synchronism and break the system into smaller areas. Motor loads are sensitive to system frequency deviations. Any change in the grid frequency, changes extremely the slip. This follows by changes of the motor torque and the motor… Show more

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“…Thus the authors (Kiseleva et al, 2014;Saigoa and Tanaka, 2006;Chen et al, 2016) propose interesting approaches: the active damping systems for torsional vibrations, sometimes using the motor as actuator in a damping system. The authors (Abdel-moamen et al, 2019) are interested in rotor dynamics in order to increase the dynamic stability during transient regimes. In (Widdle et al, 2006) the research was focussed on the elaboration of a compliant model for the rotor in order to obtain a better measurement prediction of high frequency torsional vibrations.…”
Section: Introductionmentioning
confidence: 99%
“…Thus the authors (Kiseleva et al, 2014;Saigoa and Tanaka, 2006;Chen et al, 2016) propose interesting approaches: the active damping systems for torsional vibrations, sometimes using the motor as actuator in a damping system. The authors (Abdel-moamen et al, 2019) are interested in rotor dynamics in order to increase the dynamic stability during transient regimes. In (Widdle et al, 2006) the research was focussed on the elaboration of a compliant model for the rotor in order to obtain a better measurement prediction of high frequency torsional vibrations.…”
Section: Introductionmentioning
confidence: 99%