A Novel Bus Protection Based on Morphological Top-Bottom-Operator

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Abstract:

A novel transient component bus protection based on morphological bop-bottom-operator is presented in this paper, which takes the max top-bottom-operator of current traveling wave to fast distinguish the bus internal fault from external fault. The method is based on the principle that the high frequency component of transient traveling wave caused by external fault will be attenuated by the bus capacitance but the traveling wave caused by bus internal fault changes slightly. Simulation is carried out with PSCAD/EMTDC, the result verifies the bus protection is reliable and accurate. The novel bus protection also can treat lightning failure or lightning disturbance happened on transmission lines as bus external fault, without malfunction. Introduction

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Periodical:

Advanced Materials Research (Volumes 433-440)

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876-883

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January 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] J. D. Duan and B. H. Zhang, A distributed bus protection using transient travelig wave power directions transmission lines, Proceedings of the CSEE, vol. 24, Jun. 2004, pp.7-12.

Google Scholar

[2] Z. H. Wang, Research and Implementation of Distributed Bus Protection System, Tianjin University, (2001).

Google Scholar

[3] Y. Li, Study on distributed bus protection system, Automation of Electric Systems, vol. 23, Dec. 1999, pp.45-47.

Google Scholar

[4] S. X. Wang, Study on the Transient Protection Principles for EHV Transmission Line, North China Electri Power University, (2005).

Google Scholar

[5] Y. Z. Ge, X. L. Dong and X. Z. Dong, A new bua-bar protection based on current travelling waves and wavelet transform (1)-Basic principle and criterion, Transactions of Chinese Electrotechnical Society, vol. 18, Apr. 2003, pp.95-99.

Google Scholar

[6] X. L. Dong, Y. Z. Ge and X. Z. Dong, A new bua-bar protection based on current travelling waves and wavelet transform (2)-Scheme and simulation, Transactions of Chinese Electrotechnical Society, vol. 98, Jun. 2003, pp.98-101.

Google Scholar

[7] G. B. Zou and H. L. Gao, Study status and theories of protection for transmission lines based on travelling wave, Relay, vol. 35, Oct. 2007, pp.1-6.

Google Scholar

[8] X. Z. Dong, Y. Z. Ge and J. L. He, Study status and Prospects of protection based on travelling wave for transmission lines, Power System Automation, May. 2000, pp.56-60.

Google Scholar

[9] Q.H. Wu and D.J. Zhang, Morphological filtering techniques and applications in protection relaying, Automation of Electric Power Systems, vol. 27, Apr. (2003).

Google Scholar

[10] X. P. Li and Y. S. Jin, Accurate Fault Location for HVDC Transmission Line Based on Transient Extraction of Mathematical Morphology, Modern Electric Power, vol. 24, Apr. 2007, pp.20-25.

Google Scholar

[11] H. C. Shu, Electrical Engineering Signal Processing and Applications, Science and Technoligy Press, (2009).

Google Scholar

[12] Y. Z. Ge, Principle and Technology of New Relay Protection and Fault Location, Xi'an Jiaotomg University Press, (2007).

Google Scholar

[13] B. Zhang and J. H. He, Single-ended bus integrated protection based on Karrenbauer transformation, Relay, vol. 34, Nov. 2006, pp.1-4.

Google Scholar

[14] J. D. Duan, B. H. Zhang and J. Chen, Research on current travelling wave differential protection, Automation of Electric Systems, vol. 28, May. 2004, pp.43-48.

Google Scholar

[15] D. H. Lu, Y. D. Zhu and X. Z. Dong, Study on new bus transient travelig wave protection based on wavelet transform, Electric Power Automation Equipment, vol. 22, Aug. 2002, pp.63-66.

Google Scholar

[16] W. Li and Q. Wang, Extraction of transient character based on the mathematical morphology for distributed bus protection, Power System Protection and Control, vol. 37, Jan. 2009, pp.11-19.

Google Scholar

[17] J. Y. Zeng, H. F. Ding and X. Z. Duan Hrmonics detection and disturbance location methods based on mathematical morphology, Proceedings of the CSEE, vol. 25, Dec. 2005, pp.57-62.

Google Scholar

[18] G. Wang and H. F. Li, A new bus protection based on transient current spectrum energy, Automation of Electric Systems, vol. 29, Mar. 2005, pp.51-54.

Google Scholar