TY - JOUR
T1 - Fault location of hybrid three-terminal HVDC transmission line based on improved LMD
AU - Gao, Shuping
AU - Xu, Zhenxi
AU - Song, Guobing
AU - Shao, Mingxing
AU - Jiang, Yuanyue
N1 - Publisher Copyright:
© 2021
PY - 2021/12
Y1 - 2021/12
N2 - To reduce the impact of traveling wave velocity, wave head recognition, and LMD (Local Mean Decomposition) end effect and mode mixing on location accuracy, this paper presents a fault location method based on improved LMD for hybrid three-terminal HVDC transmission lines, which is not affected by wave velocity. Firstly, the improved LMD is used to get the time when the fault traveling wave first arrives at the four measuring terminals. Then the fault branch is identified according to the ratio of the time of the fault traveling wave arriving at the measuring terminal. Finally, the equation is listed according to the principle of traveling wave location and the measurement equation which is not affected by the wave velocity is deduced. A hybrid three-terminal HVDC transmission system model is built by PSCAD to simulate various faults and output fault data under various fault conditions. MATLAB is used to process the fault data and verify the location algorithm. The simulation results show that the location method proposed in this paper is not affected by fault distances, fault types, infeed levels and transition resistances. In addition, it has higher accuracy than LMD based on CSI (Cubic Spline Interpolation) algorithm, wavelet packet location algorithm and double-ended location method of using wave velocity calculation.
AB - To reduce the impact of traveling wave velocity, wave head recognition, and LMD (Local Mean Decomposition) end effect and mode mixing on location accuracy, this paper presents a fault location method based on improved LMD for hybrid three-terminal HVDC transmission lines, which is not affected by wave velocity. Firstly, the improved LMD is used to get the time when the fault traveling wave first arrives at the four measuring terminals. Then the fault branch is identified according to the ratio of the time of the fault traveling wave arriving at the measuring terminal. Finally, the equation is listed according to the principle of traveling wave location and the measurement equation which is not affected by the wave velocity is deduced. A hybrid three-terminal HVDC transmission system model is built by PSCAD to simulate various faults and output fault data under various fault conditions. MATLAB is used to process the fault data and verify the location algorithm. The simulation results show that the location method proposed in this paper is not affected by fault distances, fault types, infeed levels and transition resistances. In addition, it has higher accuracy than LMD based on CSI (Cubic Spline Interpolation) algorithm, wavelet packet location algorithm and double-ended location method of using wave velocity calculation.
KW - Fault location
KW - Hybrid three-terminal HVDC system
KW - Improved LMD method
KW - Time-frequency diagram
KW - Traveling wave method
UR - https://www.scopus.com/pages/publications/85114134889
U2 - 10.1016/j.epsr.2021.107550
DO - 10.1016/j.epsr.2021.107550
M3 - 文章
AN - SCOPUS:85114134889
SN - 0378-7796
VL - 201
JO - Electric Power Systems Research
JF - Electric Power Systems Research
M1 - 107550
ER -