Title :
Power Systems Faults Location with Traveling Wave Based on Hilbert-Huang Transform
Author :
Liguo, Zhang ; Xu, Han ; Jian, Jia ; Tianye, Gao ; Yongsheng, Ma
Author_Institution :
Dept. of Electron. Eng., Yanshan Univ., Qinghuangdao, China
Abstract :
Identification of the signal of traveling wave is the key for power line faults location. Hilbert-Huang Transform (HHT), as a kind of time-frequency analysis method, is proposed to analysis the signal in the power system. Traveling wave of the fault circuitry is decomposed by the empirical mode decomposition (EMD), and the inherent mode functions (IMF) are extracted. Then Hilbert transform is used to calculate the instantaneous amplitude of the appropriate IMF component. The arrival time of traveling wave can be detected accurately by means of the instantaneous amplitude. Combined with a new method of line location, it can avoid the influence of wave velocity and the arc of line, and the location will be more accurate. Simulation results show that HHT can accurately extract the arrival time of traveling wave, and the precision of fault location is in the range of practical acceptance.
Keywords :
Hilbert transforms; fault location; power cables; power system faults; signal processing; time-frequency analysis; Hilbert transform; Hilbert-Huang transform; empirical mode decomposition; fault circuitry; inherent mode functions; instantaneous amplitude; line location; power line faults location; power systems faults location; signal identification; time-frequency analysis method; traveling wave; wave velocity; Circuit faults; Fault location; Frequency; Power system analysis computing; Power system faults; Power system simulation; Power system transients; Signal analysis; Signal processing; Wavelet analysis; Hilbert-Huang Transform; location of power line fault; the instantaneous amplitude; traveling wave; wave velocity;
Conference_Titel :
Energy and Environment Technology, 2009. ICEET '09. International Conference on
Conference_Location :
Guilin, Guangxi
Print_ISBN :
978-0-7695-3819-8
DOI :
10.1109/ICEET.2009.285