Recently a minimum-loss control strategy for the Dual-VSI-DFIG system was proposed. It is implemented using three rules for the determination of the optimal stator frequency, of the stator/rotor magnetizing current split and of the airgap-flux magnitude. The method uses airgap-flux orientation with direct airgap-flux and rotor-current control. This paper presents a stability analysis for the Dual-VSI-DFIG system considering two syntheses of the Proportional Integral controllers based respectively on the symmetrical optimum and on the ITAE criteria. The stability is analyzed by computing the eigenvalues of the closed-loop model. Although both tuning criteria ensure close-loop stability, the system can become unstable in case of controllergain mismatch compared to the theoretical values.

On the Stability of a Minimum-Loss Controlled Dual-VSI DFIG-DC System

Iacchetti M. F.;
2021-01-01

Abstract

Recently a minimum-loss control strategy for the Dual-VSI-DFIG system was proposed. It is implemented using three rules for the determination of the optimal stator frequency, of the stator/rotor magnetizing current split and of the airgap-flux magnitude. The method uses airgap-flux orientation with direct airgap-flux and rotor-current control. This paper presents a stability analysis for the Dual-VSI-DFIG system considering two syntheses of the Proportional Integral controllers based respectively on the symmetrical optimum and on the ITAE criteria. The stability is analyzed by computing the eigenvalues of the closed-loop model. Although both tuning criteria ensure close-loop stability, the system can become unstable in case of controllergain mismatch compared to the theoretical values.
2021
IECON Proceedings (Industrial Electronics Conference)
978-1-6654-3554-3
Control
DC power system
Dual-VSI DFIG
Efficiency improvement
Minimum loss control
Stability
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1203881
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