A New Two Points Method for Identify Dominant Harmonic Disturbance Using Frequency and Phase Spectrogram


(*) Corresponding author


Authors' affiliations


DOI's assignment:
the author of the article can submit here a request for assignment of a DOI number to this resource!
Cost of the service: euros 10,00 (for a DOI)

Abstract


This paper is focused on a practical new method for dominant harmonic disturbance detection implemented using phase and frequency spectrogram based on two-point method. The first measurement point is measured at the incoming of the point of common coupling while the second measurement point at the incoming of the load. After that, the data is processed with phase and frequency spectrogram. By comparing the data, the dominant harmonic disturbance can be identified clearly. The proposed method is compared with power direction method which is the earliest method normally used in commercial product. Then, simulation and experiment are conducted to verify the accuracy of the proposed method. Finally, the results show the proposed method is more accurate than power direction method. Further work is needed to investigate the performance of the proposed method by field measurement
Copyright © 2014 Praise Worthy Prize - All rights reserved.

Keywords


Harmonic Disturbance; Frequency Spectrogram; Phase Spectrogram

Full Text:

PDF


References


P. Li, L. Zhao, H. Bai, and Y. Zhang, "Power Quality Monitoring of Power System Based on Spectrum Analysis," in E-Product E-Service and E-Entertainment (ICEEE), 2010 International Conference on, 2010, pp. 1-4.

T. M. Blooming and D. J. Carnovale, "Application of IEEE STD 519-1992 Harmonic Limits," in Pulp and Paper Industry Technical Conference, 2006. Conference Record of Annual, 2006, pp. 1-9.

"Voltage characteristics of the electricity supplied by public distribution systems," EN 50160, 1994.

"Limitation of Emission of Harmonic Currents in Low-Voltage Power Supply Systems for Equipment with Rated Current Less Than 16A," IEC 61000-3-2, 2000.

"Assessment of Emission Limits for Distorting Loads in MV and HV Power Systems," IEC 61000-3-6, 1996

L. Cristaldi and A. Ferrero, "Harmonic power flow analysis for the measurement of the electric power quality," Instrumentation and Measurement, IEEE Transactions on, vol. 44, pp. 683-685, 1995.

X. Wilsun, L. Xian, and L. Yilu, "An investigation on the validity of power-direction method for harmonic source determination," Power Delivery, IEEE Transactions on, vol. 18, pp. 214-219, 2003.

A. M. A. Ferrero, R. Sasdelli, "Measurement of the Electric Power Quality and Related Problems," ETEP, vol. 6, p. 5.

M. E. Balci, O. Karacasu, and M. H. Hocaoglu, "A detection method for harmonic producing loads," in Electrical and Electronics Engineering, 2009. ELECO 2009. International Conference on, 2009, pp. I-149-I-153.

X. Wilsun and L. Yilu, "A method for determining customer and utility harmonic contributions at the point of common coupling," Power Delivery, IEEE Transactions on, vol. 15, pp. 804-811, 2000.

C. Chaoying, L. Xiuling, D. Koval, X. Wilsun, and T. Tayjasanant, "Critical impedance method - a new detecting harmonic sources method in distribution systems," Power Delivery, IEEE Transactions on, vol. 19, pp. 288-297, 2004.

J. Barros and R. I. Diego, "On the use of the Hanning window for harmonic analysis in the standard framework," Power Delivery, IEEE Transactions on, vol. 21, pp. 538-539, 2006.

A. R. Abdullah and A. Z. Sha'ameri, "Power quality analysis using linear time-frequency distribution," in Power and Energy Conference, 2008. PECon 2008. IEEE 2nd International, 2008, pp. 313-317.

G. C. Laurent Navarro , Jean-Charles Pinoli "Continuous frequency and phase spectrograms: a study of their 2D and 3D capabilities and application to musical signal analysis," Journal of Zhejiang University SCIENCE A vol. 9, pp. 199-206, 2008.

"Recommended practices in monitoring electric power quality " MS 1533:2002 (CONFIRMED:2012)

P. Feldmann and R. A. Rohrer, "Proof of the number of independent Kirchhoff equations in an electrical circuit," Circuits and Systems, IEEE Transactions on, vol. 38, pp. 681-684, 1991.

P. Clarkson, P. S. Wright, A. J. Wheaton, and J. H. Belliss, "Power source impedance measurement system for testing compliance to IEC 61000-3-3," in Precision Electromagnetic Measurements (CPEM), 2010 Conference on, 2010, pp. 345-346.

W. Xu, "Power direction method cannot be used for harmonic source detection," in Power Engineering Society Summer Meeting, 2000. IEEE, 2000, pp. 873-876 vol. 2.

Ç. Arikan and M. Özdemir, "Classification of power quality disturbances using support vector machines and comparing classification performance," International Review of Electrical Engineering (IREE), vol. 8(2), pp. 776-784, 2013.

Z. Moravej and M.Pazoki, "Application of a new combined technique to power quality events classification," International Review of Electrical Engineering (IREE), vol. 7(2), pp. 4172-4182, 2012.


Refbacks

  • There are currently no refbacks.



Please send any question about this web site to info@praiseworthyprize.com
Copyright © 2005-2024 Praise Worthy Prize