Unattended operation and maintenance management method and system for wind power generation

A technology of operation and maintenance management and unmanned aerial vehicles, which is applied in closed-circuit television systems, data processing applications, resources, etc., can solve problems such as poor initiative, and achieve the effect of reducing economic losses

Pending Publication Date: 2022-02-08
广东邦鑫数据科技股份有限公司
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  • Claims
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Problems solved by technology

[0007] The above content provides a solution to improve the convenience of offshore wind po

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  • Unattended operation and maintenance management method and system for wind power generation
  • Unattended operation and maintenance management method and system for wind power generation
  • Unattended operation and maintenance management method and system for wind power generation

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Embodiment Construction

[0040] The following is attached Figure 1-4 The application is described in further detail.

[0041] The embodiment of this application discloses an unattended operation and maintenance management method for wind power generation. On the one hand, it is used to combine the current increasingly mature marine unmanned vessel survey technology to fill in the topography and geomorphology of the sea area around the foundation of wind turbines in domestic offshore wind farms. There is a gap in the technical means of inspection of submarine geological conditions; on the other hand, it is used to build an intelligent inspection system for offshore UAVs based on the selection of existing UAV platforms, to independently identify surface defects of wind turbines, and to ensure safe operation of wind turbines;

[0042] Users can build an intelligent system for autonomous perception of the surrounding environment of offshore wind farms through the optoelectronic equipment carried by unman...

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Abstract

The invention discloses an unattended operation and maintenance management method and system for wind power generation. The method comprises the following steps: establishing communication connection with a pre-established machine guarding system, wherein the machine guarding system comprises an unmanned aerial vehicle and/or unmanned ship system and an on-site video monitoring system; obtaining monitoring data fed back by the machine guarding system; executing intelligent defect identification of the fan and fan associated facilities based on the monitoring data, and generating an intelligent identification report in combination with time parameters; performing event classification on the intelligent identification report according to a preset event classification standard, determining a belonging event category, and generating historical event classification data in combination with the time parameter; and importing a preset prediction evaluation model to perform event prediction of the wind power plant, and generating early warning prompt data. The method has the effect of improving the initiative of unattended operation of the offshore wind power plant.

Description

technical field [0001] This application relates to the technical field of unmanned operation and maintenance of wind power generation, in particular to an unattended operation and maintenance management method and system for wind power generation. Background technique [0002] Some provinces in my country are rich in offshore wind power resources. For example, Guangdong has a theoretical total reserve of wind energy resources in offshore waters of about 100 million kilowatts, which is a field with relatively large-scale development potential in renewable energy. [0003] With the increase of offshore wind power construction scale, the offshore operation and maintenance market will also continue to grow, and the operation and maintenance capacity, operation and maintenance scale, and operation and maintenance mode will all have a great increase. [0004] The safety of offshore wind farms is under pressure from the air, water surface, and underwater. The main reason is that th...

Claims

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Application Information

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IPC IPC(8): G06Q10/06G06Q10/00G06Q10/10G06Q50/06G06V20/52H04N7/18
CPCG06Q10/0635G06Q10/103G06Q10/20G06Q50/06H04N7/18
Inventor 刘达荣聂旭清
Owner 广东邦鑫数据科技股份有限公司
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