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Fault location in distribution systems considering the non-liner profile characteristic of voltage sag on the bus
Zheng T.2; Yang J.2; Xiao X.2; Wang Y.2
2012
Conference Name2011 International Conference on Energy, Environment and Sustainable Development, ICEESD 2011
Source PublicationAdvanced Materials Research
Volume354-355
Pages1088-1092
Conference Date21 October 2011through 23 October 2011
Conference PlaceShanghai Univ Elect Power, Shanghai, PEOPLES R CHINA
Abstract

The bus will experience different voltage sag when fault occurs at different location. Based on the non-liner profile characteristic of voltage sag measured at the bus, the paper proposes a new fault location method. Firstly, it obtains the analytical expression of each section based on the relationship between voltage sag and fault location. Then calculate the fault distance using chord secant method and identify the faulted section through the minimal deviation of fault distance. The combined two results of fault distance and faulted section make fault location accurately. It overcomes the difficulty of radial power distribution systems fault location. Through simulating for the IEEE 13 node test feeder with different faults, including various fault resistance, loading variation and the connected distributed generation, it proves the method's accuracy and effectiveness. © (2012) Trans Tech Publications.

KeywordAnalytical Expression Distribution System Fault Location Non-liner Profile Voltage Sag
DOI10.4028/www.scientific.net/AMR.354-355.1088
URLView the original
Language英語English
WOS IDWOS:000309370300206
Scopus ID2-s2.0-80155173134
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Citation statistics
Document TypeConference paper
CollectionUniversity of Macau
Affiliation1.Smart Grid Key Laboratory of Sichuan Province
2.Sichuan University
Recommended Citation
GB/T 7714
Zheng T.,Yang J.,Xiao X.,et al. Fault location in distribution systems considering the non-liner profile characteristic of voltage sag on the bus[C], 2012, 1088-1092.
APA Zheng T.., Yang J.., Xiao X.., & Wang Y. (2012). Fault location in distribution systems considering the non-liner profile characteristic of voltage sag on the bus. Advanced Materials Research, 354-355, 1088-1092.
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