Controller design for variable-speed permanent magnet wind turbine generators interfaced with Z-source inverter
Xiaoyu Wang, D. Mahinda Vilathgamuwa, King Jet Tseng, Chandana Jayampathi Gajanayake
Abstract
Xiaoyu Wang, D. Mahinda Vilathgamuwa, King Jet Tseng, Chandana Jayampathi Gajanayake
Abstract
Increased awareness of environmental concerns has caused greater interest in developing power sources based on renewable technologies, such as wind. Due to the intermittent nature of the wind speed, output voltage and frequency of the direct driven permanent magnet synchronous generators (PMSG) are normally unsteady. Recently proposed Z-source inverter has been considered as a potential solution for grid interfacing wind power generators, thanks to buck-boost function that the single stage Z-source inverter can offer. Two control methodologies, namely unified controller for isolated operation and a multi-loop controller for grid interfaced operation are investigated in this paper. Theoretical analysis of these two control schemes is presented and experimental results to verify the effectiveness of the control method are also included.
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Increased awareness of environmental concerns has caused greater interest in developing power sources based on renewable technologies, such as wind. Due to the intermittent nature of the wind speed, output voltage and frequency of the direct driven permanent magnet synchronous generators (PMSG) are normally unsteady. Recently proposed Z-source inverter has been considered as a potential solution for grid interfacing wind power generators, thanks to buck-boost function that the single stage Z-source inverter can offer. Two control methodologies, namely unified controller for isolated operation and a multi-loop controller for grid interfaced operation are investigated in this paper. Theoretical analysis of these two control schemes is presented and experimental results to verify the effectiveness of the control method are also included.
Key concepts: Controller (irrigation), Inverter, Permanent magnet synchronous generator, Wind power, Turbine, Control theory (sociology), Computer science, Variable speed wind turbine