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Experimental research platform for wind power converter device
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Experimental research platform for wind power converter device

本实验研究平台研究是针对直驱式风力发电机组的全功率变流器系统的关键技术,进行产业化转化与前沿研究。为我国风力发电机组接入装备与技术的论证、设计、建造莫定技术基础,并且在硬件、试验研究、学术交流、环境条件等方面与国际接轨,充分发挥产学研资源优势,提高我国在风力发电领域的核心技术水平与国际竟争力。
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  This experimental research platform research is aimed at the key technology of the full-power converter system of the direct-drive wind turbine, and conducts industrialization transformation and cutting-edge research. Demonstration, design, and construction of technical foundations for my country’s wind turbine access equipment and technologies, and in line with international standards in terms of hardware, experimental research, academic exchanges, environmental conditions, etc., to give full play to the advantages of industry-university-research resources to improve my country’s wind power The core technology level in the field of power generation and international competitiveness.

  As a necessary means for Baizhu to carry out the key technology research of wind power converter system, this experimental research platform takes the wind turbine converter system as the research object, and establishes the experiment of permanent magnet direct drive wind turbine converter system and components Carry out experimental research and verification tests with the test and research platform; at the same time, to ensure the compatibility and scalability of the platform, it also has the function of conducting experiments and testing research on other forms of wind turbine converter systems.

  The platform can conduct the following research:

  ●Numerical analysis and real-time simulation of wind power converter system

  ●Analysis of digital time delay characteristics of wind power converter system

  ●Non-linear control method of wind power converter system·AIl algorithm in wind power converter system application

  ●No speed, position sensor estimation technology

  ●High-performance vector control technology

  ●Algorithm for series-parallel control and redundant control

  ●Converter control and protection strategy under grid voltage drop

  ●High-performance asymmetric voltage and current detection technology

  ●The reactive power compensation strategy of the converter in response to grid faults

  ●Low voltage ride through and reactive power compensation test and test method

  ●Description and design method of network level system standard

  ●Test and evaluation methods and standards

  ●Standard interface and integrated design technology

  ●Component testing methods and standardized technology

  ●Environmental tolerance and adaptability test

  Platform composition:

  3MW-class direct-drive wind power generation connected to the converter simulation experiment system;

  20kW wind power generation is connected to the converter simulation experiment system.

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