TY - JOUR
T1 - An active protection method based on superimposed phase currents for active distribution systems
AU - Yuan, Huan
AU - Gao, Jie
AU - Wang, Xiaohua
AU - Wang, Xiaowei
AU - Yang, Aijun
N1 - Publisher Copyright:
© 2024
PY - 2024/12
Y1 - 2024/12
N2 - To enhance the fault current amplitude of active distribution systems during the weak fault period and decrease the influence of the measurement equipment noise, this paper proposes an active protection method based on superimposed phase currents for active distribution systems. This method is shown as follows. First, the reference value of the filter inductor current of each distributed generator (DG) is set as different values when the fault intensity of the active distribution system changes. Second, the superimposed phase current in each relay is obtained by subtracting each sample of phase current from its corresponding sample of phase current in the previous cycle. Third, the fundamental phase angle of the superimposed phase current is extracted. This is because the fundamental current component of the superimposed current cannot be affected by the active control strategy, which is proved in this paper in detail. Meanwhile, the feature direction is built by fundamental phase angles at both ends of the line to detect faulty zone. Finally, the proposed protection method has been validated in a modified IEEE 13-bus test system, and the test results prove the effectiveness of the proposed active protection method that can enhance the faulty feature to detect faults.
AB - To enhance the fault current amplitude of active distribution systems during the weak fault period and decrease the influence of the measurement equipment noise, this paper proposes an active protection method based on superimposed phase currents for active distribution systems. This method is shown as follows. First, the reference value of the filter inductor current of each distributed generator (DG) is set as different values when the fault intensity of the active distribution system changes. Second, the superimposed phase current in each relay is obtained by subtracting each sample of phase current from its corresponding sample of phase current in the previous cycle. Third, the fundamental phase angle of the superimposed phase current is extracted. This is because the fundamental current component of the superimposed current cannot be affected by the active control strategy, which is proved in this paper in detail. Meanwhile, the feature direction is built by fundamental phase angles at both ends of the line to detect faulty zone. Finally, the proposed protection method has been validated in a modified IEEE 13-bus test system, and the test results prove the effectiveness of the proposed active protection method that can enhance the faulty feature to detect faults.
KW - Active control strategy
KW - Active distribution systems
KW - Feature direction
KW - Fundamental phase angle
KW - Superimposed current
UR - https://www.scopus.com/pages/publications/85201712822
U2 - 10.1016/j.epsr.2024.110982
DO - 10.1016/j.epsr.2024.110982
M3 - 文章
AN - SCOPUS:85201712822
SN - 0378-7796
VL - 237
JO - Electric Power Systems Research
JF - Electric Power Systems Research
M1 - 110982
ER -