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Wind power generator system, wind energy data error correction method and yaw control method

A wind turbine, data error technology, applied in wind turbine control, engine control, wind turbine and other directions, can solve problems such as wind energy data deviation

Active Publication Date: 2018-10-23
XUJI GRP +1
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Problems solved by technology

[0004] The purpose of the present invention is to provide a wind energy data error correction method for wind power generators, to solve the problem of deviation between the wind energy data detected by the wind energy data detection equipment and the real wind energy data

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  • Wind power generator system, wind energy data error correction method and yaw control method
  • Wind power generator system, wind energy data error correction method and yaw control method

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Embodiment Construction

[0093] Embodiment 1 of wind power generator system

[0094] This embodiment provides a wind power generator system, including wind energy data detection equipment, which is used to detect wind speed information and wind direction information. The wind energy data detection equipment does not need to be an expensive high-end detection instrument, but can be a cheap mechanical Anemometer. Since one of the wind speed information and the wind direction information is a numerical value and the other is a direction, the wind speed information and wind direction information detected and output by the wind energy data detection equipment constitute a wind speed vector, which is called an initial wind speed vector. In order to process the initial wind speed vector detected by the wind energy data detection equipment, the wind power generator system also includes a data processing unit, the detection signal output terminal of the wind energy data detection equipment is output and connec...

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Abstract

The invention relates to a wind power generator system, a wind energy data error correction method and a yaw control method. Firstly, orthogonal decomposition is carried out on initial wind speed vector detected by wind energy data detection equipment, the initial wind speed vector is divided into an initial wind speed axial vector and an initial wind speed tangential vector, and then the tangential speed vector of the wake flow at the wind energy data detection equipment is calculated according to parameters such as tangential induction factors of the wake flow of a draught fan; and then thecorrected wind speed tangential vector is calculated according to the initial wind speed tangential vector and the wake flow tangential speed vector, finally, the corrected wind speed tangential vector and the initial wind speed axial vector are combined to obtain the corrected wind speed vector. The corrected wind speed tangential vector has removed a draught fan wake flow factor, so that after the corrected wind speed tangential vector and the initial wind speed axial vector are combined, the combined wind speed and wind direction are basically consistent with the actual wind speed and winddirection in front of the draught fan, deviation between the detected wind energy data and real wind energy data is eliminated, the authenticity of the data is guaranteed, and follow-up yaw control isfacilitated.

Description

technical field [0001] The invention relates to a wind power generator system, a wind energy data error correction method and a yaw control method. Background technique [0002] In the past 20 years, the wind power generation market in the world has developed rapidly, and several wind power generation equipment suppliers have emerged at home and abroad. Stand focused focus. The wind rotor alignment error is a key factor affecting the power generation efficiency of wind turbines. [0003] The traditional wind direction indicator and wind speed measuring instrument are installed behind the wind wheel and above the nacelle, such as figure 1 shown. Moreover, the Chinese patent application document with the application publication number CN104454349A discloses a wind power generator system, including equipment such as blades, wind vane, and anemometer. The wind vane and anemometer are also arranged behind the wind wheel and above the nacelle. The measured wind energy data is ...

Claims

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Application Information

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IPC IPC(8): F03D7/02G01P5/00
CPCF03D7/0204F05B2270/32F05B2270/321G01P5/00Y02E10/72
Inventor 徐奉友岳红轩赵瑞杰费怀胜张小伟
Owner XUJI GRP
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