Applying Wavelet Entropy Principle in Fault Classification
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32797
Applying Wavelet Entropy Principle in Fault Classification

Authors: S. El Safty, A. El-Zonkoly

Abstract:

The ability to detect and classify the type of fault plays a great role in the protection of power system. This procedure is required to be precise with no time consumption. In this paper detection of fault type has been implemented using wavelet analysis together with wavelet entropy principle. The simulation of power system is carried out using PSCAD/EMTDC. Different types of faults were studied obtaining various current waveforms. These current waveforms were decomposed using wavelet analysis into different approximation and details. The wavelet entropy of such decompositions is analyzed reaching a successful methodology for fault classification. The suggested approach is tested using different fault types and proven successful identification for the type of fault.

Keywords: Fault classification, wavelet transform, waveletentropy.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1079474

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 1883

References:


[1] M. Kezunovic and I. Rikalo, "Detect and classify faults using neural nets," IEEE Comput. Appl. Power, vol. 9, pp. 42-47, Oct. 1996.
[2] W. A. Wilkinson and M. D. Cox, "Discrete wavelet analysis of power system transients," IEEE Trans. Power Syst., vol. 11, pp. 2038-2044.
[3] Bin Zhang, Zhengyou He and Qingquan Qian, "Application of wavelet entropy and adaptive nerve-fuzzy inference to fault classification", Proc. Int. Conf. on Power System Technology, 2006.
[4] Zhengyou He, Yumei Cai and Qingquan Qian, "A study of wavelet entropy theory and its applications in power system", Proc. of Int. Conf. on Intelligent Mechatronics and Automation, China, Aug. 2004.
[5] Zhimin Li, Weixing Li and Ruiye Liu, "Applications of entropy principles in power system: A survey", IEEE/PES Transmission and Distribution conference and Exhibition, China, 2005.
[6] H.Zheng-you, C.Xiaoqing and L.Guoming, "Wavelet Entropy Definition and its Application for Transmission Line Fault Detection and Identification (Part I: Definition and Methodology), Proc. Int. Conf. on Power System Technology, 2006.
[7] H.Zheng-you, C.Xiaoqing and L.Guoming, "Wavelet Entropy Definition and its Application for Transmission Line Fault Detection and Identification (Part III: Transmission line faults transients identification), Proc. Int. Conf. on Power System Technology, 2006.
[8] MATLAB reference manual, The Mathworks Inc., 2002.