Future on Power Electronics for Wind Turbine Systems
Будущее силовой электроники для систем ветровых турбин
2013-08-01
SCID: 54.1/qvjef559
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control structuresgrid integrationmultimegawatt wind turbinespower electronic converterswind turbine systems
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Abstract (AI)
Wind power is still the most promising renewable energy in the year of 2013. The wind turbine system (WTS) started with a few tens of kilowatt power in the 1980s. Now, multimegawatt wind turbines are widely installed even up to 6-8 MW. There is a widespread use of wind turbines in the distribution networks and more and more wind power stations, acting as power plants, are connected directly to the transmission networks. As the grid penetration and power level of the wind turbines increase steadily, the wind power starts to have significant impacts to the power grid system. Therefore, more advanced generators, power electronic systems, and control solutions have to be introduced to improve the characteristics of the wind power plant and make it more suitable to be integrated into the power grid. Meanwhile, there are also some emerging technology challenges, which need to be further clarified and investigated. This paper gives an overview and discusses some development trends in the technologies used for wind power systems. First, the developments of technology and market are generally discussed. Next, several state-of-the-art wind turbine concepts, as well as the corresponding power electronic converters and control structures, are reviewed, respectively. Furthermore, grid requirements and the technology challenges for the future WTS are also addressed.
Key Findings
1
Emerging technology challenges and stricter grid requirements for future WTS are identified and need further clarification and investigation.
2
Higher grid penetration and power levels of wind plants necessitate more advanced generators, power electronic systems, and control solutions.
3
State-of-the-art WTS concepts require corresponding power electronic converters and control structures to improve grid integration characteristics.
4
The paper provides an overview of technology and market developments, reviews turbine concepts and converters, and addresses future challenges for WTS.
5
Wind turbines have grown from tens of kilowatts in the 1980s to multimegawatt units (up to 6–8 MW) by 2013, increasing grid impact.
Research Object
Wind turbine system (WTS) power-electronics and associated generators/converters used in multimegawatt wind power plants
Research Subject
Development trends, technology challenges, and grid-integration characteristics of power electronic converters and control structures for future multimegawatt wind turbine systems
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2013-08-01
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