TY - JOUR
T1 - Distance protection method applicable to renewable energy grid-connected systems
AU - Gui, Xiaozhi
AU - Song, Guobing
AU - Chang, Peng
AU - Chang, Zhongxue
N1 - Publisher Copyright:
© 2023, Editorial Department of Electric Power Engineering Technology. All rights reserved.
PY - 2023
Y1 - 2023
N2 - To further improve the performance of distance protection in renewable energy systems,a distance protection method is proposed,which considers the effects of control system and the distributed capacitance effect of the line. When an asymmetric fault occurs in the system,combined with the control characteristics of the converter,the sequence impedance characteristics of the grid and the pure resistive feature of the fault resistance,three unknowns in the fault loop equation can be eliminated,and the solution of the fault distance can be solved in the R-L model. Then,the setting point is set based on the calculation results in the R-L model,and the real electrical quantity at the setting point can be deduced by the calculation formula in Bergeron model. Finally,the equation from the setting point to the fault point is simultaneously solved to reduce the distributed capacitance effect on the distance protection. The simulation results testify that the method is less influenced by the fault features of the converter and fault resistance. It still has good performance in long line.
AB - To further improve the performance of distance protection in renewable energy systems,a distance protection method is proposed,which considers the effects of control system and the distributed capacitance effect of the line. When an asymmetric fault occurs in the system,combined with the control characteristics of the converter,the sequence impedance characteristics of the grid and the pure resistive feature of the fault resistance,three unknowns in the fault loop equation can be eliminated,and the solution of the fault distance can be solved in the R-L model. Then,the setting point is set based on the calculation results in the R-L model,and the real electrical quantity at the setting point can be deduced by the calculation formula in Bergeron model. Finally,the equation from the setting point to the fault point is simultaneously solved to reduce the distributed capacitance effect on the distance protection. The simulation results testify that the method is less influenced by the fault features of the converter and fault resistance. It still has good performance in long line.
KW - adaptive setting
KW - current balanced control
KW - distance protection
KW - distributed parameter model
KW - fault ride through
KW - renewable energy grid-connected system
UR - https://www.scopus.com/pages/publications/85175116931
U2 - 10.12158/j.2096-3203.2023.03.028
DO - 10.12158/j.2096-3203.2023.03.028
M3 - 文章
AN - SCOPUS:85175116931
SN - 2096-3203
VL - 42
SP - 250
EP - 257
JO - Electric Power Engineering Technology
JF - Electric Power Engineering Technology
IS - 3
ER -