TY - JOUR
T1 - A faulty feeder selection method for SLG faults based on active injection approach in non-effectively grounded DC distribution networks
AU - Xu, Ruidong
AU - Song, Guobing
AU - Chang, Zhongxue
AU - Yang, Jiayi
N1 - Publisher Copyright:
© 2024
PY - 2024/9
Y1 - 2024/9
N2 - Identifying single-line-to-ground faults in non-effectively grounded DC distribution networks is challenging because the fault current is fleeting in the transient stage and negligible in the fault steady stage. First, an active signal injection method is proposed to inject signals into the DC network after the fault occurs. And the fault characteristics of the zero-mode fault circuit including the injected signal are analyzed. Second, a zero-mode parameter identification algorithm is proposed to calculate the length of each feeder based on the injected signal in the fault steady stage. It is found that the calculated length of the healthy feeder corresponds to its actual length, but the calculated result of the faulty feeder is the opposite of the total length of all healthy feeders. Finally, a faulty feeder selection method based on the polarity of the calculated length is proposed. The simulation results shown that the method can select faulty feeders under conditions of up to 5000 Ω transient resistance and 20 dB noise.
AB - Identifying single-line-to-ground faults in non-effectively grounded DC distribution networks is challenging because the fault current is fleeting in the transient stage and negligible in the fault steady stage. First, an active signal injection method is proposed to inject signals into the DC network after the fault occurs. And the fault characteristics of the zero-mode fault circuit including the injected signal are analyzed. Second, a zero-mode parameter identification algorithm is proposed to calculate the length of each feeder based on the injected signal in the fault steady stage. It is found that the calculated length of the healthy feeder corresponds to its actual length, but the calculated result of the faulty feeder is the opposite of the total length of all healthy feeders. Finally, a faulty feeder selection method based on the polarity of the calculated length is proposed. The simulation results shown that the method can select faulty feeders under conditions of up to 5000 Ω transient resistance and 20 dB noise.
KW - Active injection strategy
KW - DC distribution networks
KW - Faulty feeder selection
KW - Non-effectively grounding mode
KW - Single-line-to-ground fault
UR - https://www.scopus.com/pages/publications/85195639686
U2 - 10.1016/j.epsr.2024.110535
DO - 10.1016/j.epsr.2024.110535
M3 - 文章
AN - SCOPUS:85195639686
SN - 0378-7796
VL - 234
JO - Electric Power Systems Research
JF - Electric Power Systems Research
M1 - 110535
ER -