Voltage source type full-power wind turbine generator set control method based on energy storage coordination control

A wind turbine, voltage source type technology, applied in wind power generation, reducing/preventing power oscillation, electrical components, etc., can solve the problem that inertia and damping cannot be provided systematically, wind turbines do not have primary frequency modulation, and wind turbines do not have frequency modulation, modulation pressure, etc.

A wind turbine, voltage source type technology, applied in wind power generation, reducing/preventing power oscillation, electrical components, etc., can solve the problem that inertia and damping cannot be provided systematically, wind turbines do not have primary frequency modulation, and wind turbines do not have frequency modulation, modulation pressure, etc.

CN112217235AActive Publication Date: 2021-01-12HEFEI UNIV OF TECH

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  • Voltage source type full-power wind turbine generator set control method based on energy storage coordination control
  • Voltage source type full-power wind turbine generator set control method based on energy storage coordination control
  • Voltage source type full-power wind turbine generator set control method based on energy storage coordination control

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Embodiment Construction

[0067] The specific implementation manners of the present invention will be further described in detail below in conjunction with the accompanying drawings.

[0068] In this embodiment, a voltage source type full-power wind turbine control method based on energy storage coordination, such as figure 1 As shown, the full-power wind turbine is composed of a wind turbine, an asynchronous generator, a machine-side converter, a grid-side converter, and a filter inductor L f , filter capacitor C f Connected in sequence, the DC capacitor C and the energy storage device are connected in parallel between the DC positive bus P and the DC negative bus N connecting the machine-side converter and the grid-side converter, and the filter capacitor C f The other end is connected to the grid, L s Transmission line inductance for the grid, simulating a weak grid environment.

[0069] The control method of the present invention dynamically realizes the virtual synchronous control of the grid-s...

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Abstract

The invention discloses a voltage source type full-power wind turbine generator set control method based on energy storage coordination control, which simulates inertia and frequency modulation and voltage regulation characteristics of a synchronous generator, so that a full-power wind turbine generator set has the capability of supporting weak power grid voltage and frequency. According to the method, the spontaneous angle of the grid-side converter is obtained by dynamically adjusting the voltage of the direct-current bus, so that the grid-side converter is synchronized with the power grid,and the stability problem caused by the fact that a phase-locked loop achieves power grid synchronization under the condition of a weak power grid in traditional grid-connected control is avoided. Meanwhile, the direct-current side external energy storage device provides energy for the wind turbine generator set for standby application. The problem that due to limited kinetic energy of a wind turbine rotor, wind turbine generator rotation reserve is insufficient is solved. Coordinated operation of grid-side converter direct-current bus voltage dynamic virtual synchronous control and an energystorage device is expected to be achieved, so that the stability of a wind turbine generator under a weak power grid is improved, and the primary frequency modulation and voltage regulation capacity is improved.

Description

technical field [0001] The invention relates to the field of wind power generation, and specifically proposes a voltage source type full-power wind turbine control method based on energy storage coordinated control. Background technique [0002] With the global energy crisis and environmental problems becoming more and more prominent, wind power technology, as a clean energy source, has been widely concerned and developed. With the increasing demand for wind power generation, large-capacity and high-proportion wind power systems are continuously integrated into the grid, the proportion of traditional synchronous generators is gradually reduced, and the rotating reserve capacity and moment of inertia of the power system are relatively reduced. The wind turbines exhibit the characteristics of current sources to the outside. Under weak grid conditions, large-scale wind turbines are likely to cause problems such as voltage instability and lack of inertia when they are connected ...

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Application Information

Patent Timeline
12 Jan 2021
Publication
CN112217235A
IPC
H02J3/38; H02J3/24; H02J3/32
CPC
H02J3/381; H02J3/241; H02J3/32; H02J2300/28; Y02E10/76
Inventors
谢震; 王超