[1] 王成山,肖朝霞,王守相.微网综合控制与分析[J].电力系统自动化,2008,32(7):98-103.?
[1]董瑞,李晓英.飞轮电池对风光互补发电系统电压波动的改善研究[J].工业仪表与自动化装置,2013,(05):117.
[2]王兴贵,王 点,李晓英.超级电容与蓄电池混合储能对微电网频率稳定性改善研究[J].工业仪表与自动化装置,2014,(06):1.
WANG Xinggui,WANG Dian,LI Xiaoying.Study on the improvement of Micro-grid’s frequency stability based on battery and supercapacitor hybrid energy storage[J].Industrial Instrumentation & Automation,2014,(03):1.
[3]韩向可,段立霞.基于DSP的风电场电能质量监测系统设计[J].工业仪表与自动化装置,2014,(06):50.
HAN Xiangke,DUAN Lixia.Design of wind farm power quality monitoring system based on DSP[J].Industrial Instrumentation & Automation,2014,(03):50.
[4]李俊秀,李明旭.基于DSP电压闪变在线检测方法及仿真[J].工业仪表与自动化装置,2015,(05):117.
LI Junxiu,LI Mingxu.The Research of the Voltage flicker detection methods online based on the DSP[J].Industrial Instrumentation & Automation,2015,(03):117.
[5]毛璐明,杨玉群.考虑负荷重要性的微电网电源容量优化配置[J].工业仪表与自动化装置,2016,(06):62.
MAO Luming,YANG Yuqun.Micro-grid generation capacity optimization with consideration of load importance[J].Industrial Instrumentation & Automation,2016,(03):62.
[6]张 军,李生根,韩少华,等.微电网谐波治理控制策略研究[J].工业仪表与自动化装置,2018,(04):110.[doi:1000-0682(2018)04-0000-00]
ZHANG Jun,LI Shenggen,HAN Shaohua,et al.Research on control strategy of harmonics control in microgrid[J].Industrial Instrumentation & Automation,2018,(03):110.[doi:1000-0682(2018)04-0000-00]
[7]张韵辉.微电网运行控制策略研究[J].工业仪表与自动化装置,2018,(04):114.[doi:1000-0682(2018)04-0000-00]
ZHANG Yunhui.Research on microgrid control strategy for the operation[J].Industrial Instrumentation & Automation,2018,(03):114.[doi:1000-0682(2018)04-0000-00]
[8]崔慧明,王 程,陈振勇,等.基于MEEMD的复合电能质量扰动检测方法研究[J].工业仪表与自动化装置,2018,(06):12.[doi:1000-0682(2018)06-0000-00]
CUI Huiming,WANG Cheng,CHEN Zhenyong,et al.Research on compound power quality disturbance detection method based on MEEMD[J].Industrial Instrumentation & Automation,2018,(03):12.[doi:1000-0682(2018)06-0000-00]
[9]朱 丹,张 进.基于免疫粒子群优化算法的微电网谐波抑制策略[J].工业仪表与自动化装置,2019,(01):17.[doi:1000-0682(2019)01-0000-00]
ZHU Dan,ZHANG Jin.Micro grid harmonic suppression strategy based on immune particle swarm optimization algorithm[J].Industrial Instrumentation & Automation,2019,(03):17.[doi:1000-0682(2019)01-0000-00]
[10]何晓丽,刘立群.基于Hilbert-huang变换和RVM的电能质量检测与分类[J].工业仪表与自动化装置,2021,(01):123.[doi:10.3969/j.issn.1000-0682.2021.01.029]
HE Xiaoli,LIU Liqun.Power quality detection and classification based on Hilbert Huang transform and RVM[J].Industrial Instrumentation & Automation,2021,(03):123.[doi:10.3969/j.issn.1000-0682.2021.01.029]