Title :
Preliminary study on adaptive fast-tripping current protection for microgrid
Author :
Wenchao Fan;Zaijun Wu;Xiaobo Dou;Ye Shi;Yang Wang;Mingxing Zhou
Author_Institution :
School of Electrical Engineering, Southeast University, Nanjing, China
Abstract :
Because the microgrid´s varied operation states and the application of inverter micro sources, failure characteristics may be quite different when the microgrid in different states. Microgrid feeder protection configuration is a problem to be solved. To solve this problem, the application of the adaptive current protection policies in the microgrid feeder protection was studied. System model was established and simulated. The emulational results showed that when the microgrid operation state changed, the protection equipment could adjust setting values of current in time according to the adaptive current fast-tripping protection strategy. The protection strategy is simple and does not require communication devices. It offers a solution for solving the problem that the microgrid feeder protection setting value is difficult to determine.
Keywords :
"Microgrids","Inverters","Impedance","Force","Power system stability","Short-circuit currents","Equivalent circuits"
Conference_Titel :
Smart Grid Technologies - Asia (ISGT ASIA), 2015 IEEE Innovative
Electronic_ISBN :
2378-8542
DOI :
10.1109/ISGT-Asia.2015.7387172