Research on Control-protection Coordination Based on Injection Protect Scheme of Microgrid

被引:0
作者
Fang C. [1 ]
Mu L. [1 ]
Ou R. [1 ]
Wang Z. [1 ]
机构
[1] College of Electronics and Information Engineering, Tongji University, Jiading District, Shanghai
来源
Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering | 2023年 / 43卷 / 09期
关键词
coordination of control; injection-type protection; inverter-interfaced distributed generator; microgrid; protection; protection scheme;
D O I
10.13334/j.0258-8013.pcsee.213312
中图分类号
学科分类号
摘要
The fault response of microgrid is different from that of conventional distribution network because of the high penetration rate of inverter-interfaced distributed generators (IIDGs). Therefore, conventional protection schemes cannot be directly applied to microgrid. A novel protection method based on coordination of control and protection is proposed in this paper. The non-power frequency characteristic of IIDG is firstly studied. Then schemes based on single IIDG injection and multiple IIDGs injection are compared. A multiple IIDG based injection strategy, the tuning principle of filter parameters at the point of common coupling (PCC), and the starting criterion of multiple IIDGs injection are proposed. Corresponding IIDG controllers are designed as well. The simulation results show that when a fault occurs, all the IIDGs can start the feature frequency output in a short time; while significant feature frequency signals can be detected in the grid. By synthesizing the results of theoretical analysis and simulation, it can be concluded that the proposed system can handle the problem of feature signal shunting and coordination of multiple IIDGs, which provides both theoretical support and practical solution to all types of injection protection schemes based on over current, fault component, etc. ©2023 Chin.Soc.for Elec.Eng.
引用
收藏
页码:3389 / 3401
页数:12
相关论文
共 25 条
[1]  
Hua HAN, HOU Xiaochao, YANG Jian, Review of power sharing control strategies for islanding operation of AC microgrids[J], IEEE Transactions on Smart Grid, 7, 1, pp. 200-215, (2016)
[2]  
Wei DAI, QIN Wenping, REN Chunguang, Adaptive virtual impedance control based on decoupling droop in microgrid with synchronous generators[J], Proceedings of the CSEE, 40, 14, pp. 4486-4495, (2020)
[3]  
ZHANG Fan, MU Longhua, WANG Zihao, Optimal fault control strategy of master-slave controlled islanding microgrid[J], Proceedings of the CSEE, 40, 4, pp. 1241-1248, (2020)
[4]  
ZHOU Chenghan, ZOU Guibin, DU Xiaogong, A pilot protection method based on positive sequence fault component current for active distribution networks[J], Proceedings of the CSEE, 40, 7, pp. 2102-2112, (2020)
[5]  
ESKANDARI M, SAVKIN A V., On the impact of fault ride-through on transient stability of autonomous microgrids:nonlinear analysis and solution[J], IEEE Transactions on Smart Grid, 12, 2, pp. 999-1010, (2021)
[6]  
Zhou LIU, Chi SU, HOIDALEN H K, A multiagent system-based protection and control scheme for distribution system with distributed-generation integration[J], IEEE Transactions on Power Delivery, 32, 1, pp. 536-545, (2017)
[7]  
Shaofei SHEN, Da LIN, WANG Huifang, An adaptive protection scheme for distribution systems with DGs based on optimized Thevenin equivalent parameters estimation[J], IEEE Transactions on Power Delivery, 32, 1, pp. 411-419, (2017)
[8]  
SHARAF H M, ZEINELDIN H H, EL-SAADANY E., Protection coordination for microgrids with grid-connected and islanded capabilities using communication assisted dual setting directional overcurrent relays[J], IEEE Transactions on Smart Grid, 9, 1, pp. 143-151, (2018)
[9]  
AGHDAM T S, KAREGAR H K, ZEINELDIN H H., Variable tripping time differential protection for microgrids considering DG stability[J], IEEE Transactions on Smart Grid, 10, 3, pp. 2407-2415, (2019)
[10]  
XUE Shimin,CUI Miao, Current traveling wave based protection scheme for microgrids using morphological gradient algorithm[J], Power System Protection and Control, 47, 2, pp. 31-39, (2019)