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风电场群自动电压控制硬件在环试验平台设计

Design of Wind Farm Cluster AVC Hardware-in-loop Testing Platform
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摘要 为了准确反映风电场群无功策略的控制性能,加速对风电场群自动电压控制(AVC)策略的验证,搭建了风电场群模型。根据风电场间输电线路距离对模型进行分割,并建立各子风电场模型之间、子风电场与AVC硬件之间的通信,监测各控制节点实时电压。最后,基于由UREP300实时仿真器搭建的风电场群AVC硬件在环(HIL)试验平台验证了风电场群AVC策略的可行性。 To accurately reflect the control performance of the reactive power strategy in a wind farm cluster and accelerate the development and verification of the automatic voltage control(AVC)strategy for the wind farm cluster,a wind farm cluster model was established.The transmission line distances between the wind farms were segmented,and communication was enabled between the models of each sub-wind farm and between the sub-wind farms and their AVC hardware to monitor the real-time voltage at each control node by the AVC device.A hardware-in-loop(HIL)testing platform for the AVC of the wind farm cluster was built based on the UREP300 real-time simulation system.This platform was used to verify the AVC control strategy of a specific wind farm cluster.The simulation and experimental results demonstrate the feasibility of the AVC strategy for the wind farm cluster.
作者 晏波 陈卓 郝正航 熊国江 姚盼 YAN Bo;CHEN Zhuo;HAO Zhenghang;XIONG Guojiang;YAO Pan(College of Electrical Engineering,Guizhou University,Guiyang 550025,China)
出处 《实验室研究与探索》 北大核心 2025年第1期69-73,共5页 Research and Exploration In Laboratory
基金 国家自然科学基金项目(52167007)。
关键词 实时仿真器 硬件在环 风电场群 自动电压控制 real-time simulator hardware-in-loop(HIL) wind farm cluster automatic voltage control(AVC)
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