Title :
Fault Detection and Classification in EHV Transmission Line Based on Wavelet Singular Entropy
Author :
He, Zhengyou ; Fu, Ling ; Lin, Sheng ; Bo, Zhiqian
Author_Institution :
Coll. of Electr. Eng., Southwest Jiaotong Univ., Chengdu, China
Abstract :
A novel technique for fault detection and classification in the extremely high-voltage transmission line using the fault transients is proposed in this paper. The novel technique, called wavelet singular entropy (WSE), incorporates the advantages of the wavelet transform, singular value decomposition, and Shannon entropy. WSE is capable of being immune to the noise in the fault transient and not being affected by the transient magnitude so it can be used to extract features automatically from fault transients and express the fault features intuitively and quantitatively even in the case of high-noise and low-magnitude fault transients. The WSE-based fault detection is performed in this paper, which proves the availability and superiority of WSE technique in fault detection. A novel algorithm based on WSE is put forward for fault classification and it is verified to be effective and reliable under various fault conditions, such as fault type, fault inception time, fault resistance, and fault location. Therefore, the proposed WSE-based fault detection and classification is feasible and has great potential in practical applications.
Keywords :
fault location; feature extraction; power system faults; power transmission lines; singular value decomposition; wavelet transforms; EHV transmission line; Shannon entropy; extremely high-voltage transmission line; fault classification; fault detection; fault inception time; fault location; fault resistance; fault transients; fault type; feature extraction; singular value decomposition; wavelet singular entropy; wavelet transform; Entropy; Fault detection; Power transmission lines; Singular value decomposition; Transient analysis; Wavelet transforms; Extremely high-voltage (EHV) transmission line; fault classification; fault detection; singular value decomposition; wavelet singular entropy; wavelet transform;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2010.2042624