摘要
为研究微电网中投切电容器所引起的过电压,基于电磁暂态计算软件PSCAD/EMTDC搭建了微电网投切电容器仿真模型。模型主要包括3种不同类型的微电源(小型同步发电机、风力发电机及基于逆变设备的电源)以及并联电容器组。仿真研究了不同微电源运行情况下,电容器投切过程中不重燃、单相重燃和两相重燃3种情况下的过电压。仿真结果表明:不同类型的微电源所引起的过电压相差不大,电容器发生重燃时会产生较严重的过电压,最大过电压标幺值超过4.0。
The overvoltage caused by a switching shunt capacitor in a mierngrid was analyzed using a simulation model based on PSCAD/EMTDC, including shunt capacitors and three different types of micro-sources (the small synchronous generator, a wind turbine generator based on an asynchronous generator, and a micro-source based on an inverter). This study analyzes the effects of different micro-source types on the switching shunt capacitor overvohage and the overvohage level for no re-ignition, single-phase re ignition, and two-phase re ignition. The simulations show that the overvoltages caused by the different micro-sources are quite similar. The per-unit overvoltages for single-phase re-ignition and two-phase re ignition are likely to exceed 4.0.
出处
《清华大学学报(自然科学版)》
EI
CAS
CSCD
北大核心
2012年第3期351-355,共5页
Journal of Tsinghua University(Science and Technology)
基金
国家重点实验室专项基金资助项目(50823001)
关键词
微电网
微电源
投切电容器
过电压
mierogrid
micro source model
switching shuntcapacitor
overvoltage
作者简介
陈水明(1968-),男(汉),浙江,教授。E-mail:chensm@tsinghua.edu.cn