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The LVRT Control Scheme for PMSG-Based Wind Turbine Generator Based on the Coordinated Control of Rotor Overspeed and Supercapacitor Energy Storage

Xiangwu Yan, Linlin Yang, Tiecheng Li

2021Energies27 citationsDOIOpen Access PDF

Abstract

With the increasing penetration level of wind turbine generators (WTGs) integrated into the power system, the WTGs are enforced to aid network and fulfill the low voltage ride through (LVRT) requirements during faults. To enhance LVRT capability of permanent magnet synchronous generator (PMSG)-based WTG connected to the grid, this paper presents a novel coordinated control scheme named overspeed-while-storing control for PMSG-based WTG. The proposed control scheme purely regulates the rotor speed to reduce the input power of the machine-side converter (MSC) during slight voltage sags. Contrarily, when the severe voltage sag occurs, the coordinated control scheme sets the rotor speed at the upper-limit to decrease the input power of the MSC at the greatest extent, while the surplus power is absorbed by the supercapacitor energy storage (SCES) so as to reduce its maximum capacity. Moreover, the specific capacity configuration scheme of SCES is detailed in this paper. The effectiveness of the overspeed-while-storing control in enhancing the LVRT capability is validated under different levels of voltage sags and different fault types in MATLAB/Simulink.

Topics & Concepts

Low voltage ride throughPermanent magnet synchronous generatorControl theory (sociology)Rotor (electric)Fault (geology)Wind powerTurbineEngineeringVoltage sagEnergy storageVoltageAC powerAutomotive engineeringPower (physics)Computer scienceElectrical engineeringControl (management)Power qualityArtificial intelligenceMechanical engineeringGeologySeismologyPhysicsQuantum mechanicsMicrogrid Control and OptimizationWind Turbine Control SystemsMultilevel Inverters and Converters
The LVRT Control Scheme for PMSG-Based Wind Turbine Generator Based on the Coordinated Control of Rotor Overspeed and Supercapacitor Energy Storage | Litcius