DocumentCode :
3360345
Title :
Study of the Inrush Current Identification Using the Improved Half-Cycle Fourier Analysis
Author :
Duan Jiandong ; Wu Chang ; Yu Jianming
Author_Institution :
Dept. of Electr. Eng., Xi´an Univ. of Technol., Xi´an
fYear :
2009
fDate :
27-31 March 2009
Firstpage :
1
Lastpage :
4
Abstract :
Among the traditional schemes of current differential protection for power transformer, the principles of second harmonic restraint and dead angle restraint to distinguish inrush current from fault current are influenced such many factors as the decrease of transformer core magnetic saturation and CT transient saturation. In fact, the inrush current is characterized of its peaky wave and its relatively big dead angle compared with the internal fault current. So the paper proposes a novel method to identify the inrush current using the improved half-cycle Fourier analysis (HCFA). The improved HCFA can accurately extract the fundamental component and reflect the characteristic difference of the inrush current waveform. The proposed method is tested by a large amount of EMTDC simulation on various conditions, the dynamic analogous test data from different transformers. These test results indicate that the novel method to identify inrush current is basically correct and feasible.
Keywords :
Fourier transforms; fault currents; power transformer protection; dead angle restraint; fault current; half-cycle Fourier analysis; inrush current identification; inrush current waveform; internal fault current; power transformer; second harmonic restraint; transformer core magnetic saturation; Circuit faults; Data mining; Fault currents; Magnetic analysis; Power system harmonics; Power transformers; Saturation magnetization; Surge protection; Testing; Transformer cores;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power and Energy Engineering Conference, 2009. APPEEC 2009. Asia-Pacific
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-2486-3
Electronic_ISBN :
978-1-4244-2487-0
Type :
conf
DOI :
10.1109/APPEEC.2009.4918796
Filename :
4918796
Link To Document :
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