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并联型APF在GIS互感器检定平台中的应用
引用本文:翟少磊,余恒洁,孙军,曹敏,朱全聪,席自强,刘乐然.并联型APF在GIS互感器检定平台中的应用[J].水电能源科学,2019,37(3):160-163.
作者姓名:翟少磊  余恒洁  孙军  曹敏  朱全聪  席自强  刘乐然
作者单位:云南电网有限责任公司电力科学研究院;云南电网有限责任公司;武汉磐电科技有限公司;湖北工业大学太阳能高效利用及储能运行控制湖北省重点实验室
摘    要:为有效改善长管道GIS互感器检定平台电源的电能质量,应用并联型APF补偿其中的谐波及无功,采用一种新型电流控制策略,直接检测网侧电流,电流控制环节采用PI控制器和谐振控制器分别作用于基波和谐波分量,用多个并联的谐振控制器根据补偿要求灵活设置谐波分量的补偿阶次,选择性补偿负载谐波,有效提高了并联型APF的补偿精度。最后,通过仿真及试验研究证明了该控制方法能有效降低谐波含量、提高电源的电能质量,具有重要的理论意义和使用价值。

关 键 词:并联型APF  GIS互感器  补偿  网侧电流检测

Application of Shunt APF in GIS Transformer Test Platform
ZHAI Shao-lei,YU Heng-jie,SUN Jun,CAO Min,ZHU Quan-cong,XI Zi-qiang,LIU Le-ran.Application of Shunt APF in GIS Transformer Test Platform[J].International Journal Hydroelectric Energy,2019,37(3):160-163.
Authors:ZHAI Shao-lei  YU Heng-jie  SUN Jun  CAO Min  ZHU Quan-cong  XI Zi-qiang  LIU Le-ran
Affiliation:(Electric Power Research Institute,Yun nan Power Grid Co.,Ltd.,Kunming 650217,China;Yunnan Power Grid Co.,Ltd.,Kunming 650217,China;Wuhan Pandian Technology Co.,Ltd.,Wuhan 430058.China;Hubei Key Laboratory for High-efficiency Utilization of Solar Energy and Operation Centrol of Energy Storage System,Hubei University of Technology,Wuhan 430068,China)
Abstract:In order to effectively improve the power quality of the GIS transformer test platform, the shunt APF was used to compensate for the harmonics and reactive power. This paper proposed a new current control method which was based on the grid current detection. The PI controller and PR controllers in current control loop were respectively used to control the fundamental and harmonic components, and the multiple parallel PR controllers was used to set compensation order of harmonic components and the load harmonics according to the compensation requirements, which effectively improved the compensation accuracy of shunt APF. Finally, the simulation and experiment research verified the practicability of this control method. Therefore, it has important theoretical meaning and practical value.
Keywords:shunt APF  GIS transformer  compensation  grid current detection
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