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使用电压-相角下垂控制的微电网控制策略设计
引用本文:郜登科,姜建国,张宇华.使用电压-相角下垂控制的微电网控制策略设计[J].电力系统自动化,2012,36(5):29-34.
作者姓名:郜登科  姜建国  张宇华
作者单位:电力传输与功率变换控制教育部重点实验室,上海交通大学电子信息与电气工程学院,上海市 200240
基金项目:国家重点基础研究发展计划(“973计划”)
摘    要:根据微电网的特点,对微电网2种运行模式采取的不同控制策略进行设计。微电网孤岛运行时,分布式发电单元采用电压源逆变器控制,使用电压—相角下垂控制实现按预定比例分配负荷功率,该下垂控制较电压—频率下垂控制可以提供更好的频率支撑。微电网并网运行时,分布式发电单元采用PQ控制,按照功率设定值输出功率。通过设计对应电压—相角下垂控制的同步控制器实现了微电网运行模式的无缝转换。利用MATLAB/Simulink对微电网运行模式转换和微电网孤岛运行时使用的2种下垂控制进行对比仿真分析,验证了电压—相角下垂控制策略的可行性和有效性。

关 键 词:微电网  分布式发电  孤岛运行  并网运行  下垂控制  电压源逆变器控制  PQ控制
收稿时间:5/12/2011 4:06:52 PM
修稿时间:2/9/2012 1:11:08 PM

Design of Microgrid Control Strategy Using Voltage Amplitude and Phase Angle Droop Control
GAO Dengke,JIANG Jianguo,ZHANG Yuhua.Design of Microgrid Control Strategy Using Voltage Amplitude and Phase Angle Droop Control[J].Automation of Electric Power Systems,2012,36(5):29-34.
Authors:GAO Dengke  JIANG Jianguo  ZHANG Yuhua
Affiliation:(Key Laboratory of Control of Power Transmission and Conversion of Ministry of Education,School of Electronic Information and Electrical Engineering,Shanghai Jiaotong University,Shanghai 200240,China)
Abstract:Based on microgrid features,different control strategies are designed for two operation modes of microgrid.When the microgrid is on isolated island operation mode,distributed generation units adopt voltage source inverter control,using voltage amplitude and phase angle droop control to share load power according to predetermined proportion.This droop control can provide better frequency support than voltage amplitude and frequency droop control.When the microgrid is on grid-connected operation mode,distributed generation units adopt PQ control so as to output power according to given values.Microgrid operation modes can achieve seamless transition by using synchronization controller corresponding to voltage amplitude and phase angle droop control.Microgrid transition between operation modes and comparison between two kinds of droop control when microgrid operates on isolated island operation mode are analyzed.MATLAB/Simulink simulation shows that voltage amplitude and phase angle droop control strategy is feasible and effective.
Keywords:microgrid  distributed generation  isolated island operation  grid-connected operation  droop control  voltage source inverter control  PQ control
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