Control method for enhancing asymmetrical fault ride-through capability of wind power system
A control method and technology for wind power systems, which are applied in the directions of reducing the asymmetry of multiphase networks, eliminating/reducing asymmetry in multiphase networks, and wind power generation, etc., can solve problems such as adverse effects, and achieve grid-connected active power and reactive power. Adjustable, eliminate double power frequency ripple, improve the effect of asymmetric fault ride-through capability
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2011-11-02
- Estimated Expiration
- Not applicable · inactive patent
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Abstract
Description
technical field
[0001] The invention relates to a wind power system of a grid-connected direct-drive permanent magnet synchronous wind power generating set, and a control method for improving its ride-through capability when an asymmetrical fault occurs. Background technique
[0002] Electricity generated by wind power (wind power) is green energy. Except for very small wind turbines, wind turbines are first integrated into the grid, and then supply power to users through the grid. With the continuous increase of grid-connected wind power capacity, its impact on the grid cannot be ignored. Therefore, the grid code requires that the wind power system will not run off-grid under the specified range of grid faults. Therefore, how to ensure that the wind power system will not be disconnected from the grid during the grid fault period, that is, to ensure that it "passes through" the grid fault period, has become an important issue unique to the wind power system. Among the curr...
Examples
Embodiment Construction
[0028] A control method for improving the asymmetric fault ride-through capability of a wind power system, the control method is aimed at the wind power system including the direct-drive permanent magnet synchronous wind turbine (D-PMSG), the power grid and the direct-drive permanent magnet -PMSG) and the back-to-back converter including the machine-side rectifier and the grid-side inverter; among them, the machine-side rectifier adopts a double closed-loop control structure with a speed outer loop and a current inner loop to control the direct drive permanent magnet Synchronous wind turbines are used to control the maximum wind energy tracking; the grid-side inverter adopts a double closed-loop control structure of voltage outer loop and current inner loop, so that the voltage outer loop ensures the stability of the DC bus voltage under normal grid conditions, and the current inner loop Ensure the grid-connected active power and reactive power can be adjusted and the grid-conn...