In this paper, a torque control algorithm for direct drive wind turbines using a twelve-phase permanent magnet synchronous electrical machine is proposed. An electrical machine oriented to output four independent 3-phase star subsystems have been introduced in order to improve direct drive wind turbine torque control, power generation and reliability. A specific coordinate transformation for multi-phase electrical machine control that allows the independent and decoupled management of each electric three-phase subsystem has been developed. The synthesis and the simulation results of the proposed control algorithm are presented.

A Multi-Phase PM Synchronous Generator Torque Control for Direct-Drive Wind Turbines

DAMIANO, ALFONSO;GATTO, GIANLUCA;MARONGIU, IGNAZIO;SERPI, ALESSANDRO
2012-01-01

Abstract

In this paper, a torque control algorithm for direct drive wind turbines using a twelve-phase permanent magnet synchronous electrical machine is proposed. An electrical machine oriented to output four independent 3-phase star subsystems have been introduced in order to improve direct drive wind turbine torque control, power generation and reliability. A specific coordinate transformation for multi-phase electrical machine control that allows the independent and decoupled management of each electric three-phase subsystem has been developed. The synthesis and the simulation results of the proposed control algorithm are presented.
2012
978-1-4673-1301-8
Multi-phase electrical machines control, permanent magnet synchronous generator, renewable energy, wind generation, direct-drive wind turbine
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11584/106503
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