引用本文:于思奇,孙大卫,吴林林,李蕴红,王潇,邓晓洋,宋嘉炜.新能源汇集系统短路故障清除后的暂态过电压机理[J].电力自动化设备,2023,43(9):179-185.
YU Siqi,SUN Dawei,WU Linlin,LI Yunhong,WANG Xiao,DENG Xiaoyang,SONG Jiawei.Transient overvoltage mechanism after short circuit fault removal of renewable energy collection system[J].Electric Power Automation Equipment,2023,43(9):179-185.
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新能源汇集系统短路故障清除后的暂态过电压机理
于思奇, 孙大卫, 吴林林, 李蕴红, 王潇, 邓晓洋, 宋嘉炜
国网冀北电力科学研究院(华北电力科学研究院有限责任公司),北京 100045
摘要:
新能源汇集系统交流短路故障后产生的非工频暂态过电压可能导致新能源机组大规模脱网甚至损毁,这已成为制约新能源汇集系统送电极限的决定性因素。基于华北地区典型新能源汇集系统构建算例系统,分析短路故障下的暂态过电压形态特征,阐明易产生暂态过电压的系统参数条件,建立数学模型进行定量研究,利用RLC电路的全响应理论解释产生暂态过电压的本质原因。分析结果表明,短路故障清除后新能源汇集系统的电路固有谐振过程是导致暂态过电压的主要原因之一。
关键词:  新能源汇集系统  短路故障  暂态过电压  送电极限  高频分量
DOI:10.16081/j.epae.202308004
分类号:
基金项目:国家电网有限公司总部科技项目(接入弱电网的风电机组暂态电压优化控制技术研究)(4000-202214067A-1-1-ZN)
Transient overvoltage mechanism after short circuit fault removal of renewable energy collection system
YU Siqi, SUN Dawei, WU Linlin, LI Yunhong, WANG Xiao, DENG Xiaoyang, SONG Jiawei
State Grid Jibei Electric Power Research Institute(North China Electric Power Research Institution Co.,Ltd.),Beijing 100045, China
Abstract:
The non-power frequency transient overvoltage produced after short circuit fault of renewable energy collection system may lead to large-scale disconnection even damage of renewable energy units, which has become a decisive factor for restricting the power transmission limit of renewable energy collection system. An example system is built based on a typical renewable energy collection system in North China region, the morphological features of transient overvoltage are analyzed under short circuit faults, the system parameter conditions that are prone to transient overvoltage are clarified, a mathematical model is established for quantitative research, and the full response theory of RLC circuit is used to explain the essential cause of transient overvoltage. The analysis results show that the inherent resonance process of renewable energy collection system after short circuit fault removal is one of the main reasons of transient overvoltage.
Key words:  renewable energy collection system  short circuit fault  transient overvoltage  power transmission limit  high frequency component

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