Reliability Evaluation Research of 10 kV Typical Configuration Feeder Based on the FMEA

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Abstract:

The 10kV feeder typical configuration is divided into two categories of no standby power and standby power in the paper, and subdivided into different configurations, then we use FMEA to analyze the power supply reliability of 10 kV radial lines under the different configurations, at last we compare and analyze the reliable indexes of the different equipment configuration schemes, such as the reliable rate RS-1, the system average interruption frequency AITC-1 etc. The research results show that space truss structure and switch configuration directly affect the power supply reliability of the distribution network. In the conditions of reserved auto-switch-on device and section switches automatically isolating faults, the power supply reliability rate is the highest, and the average interruption frequency and outage time are the lowest.

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Periodical:

Advanced Materials Research (Volumes 986-987)

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439-444

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Online since:

July 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Chen Wengao, in: Basis of Distribution System Reliability, edited by Chinese Power Press, Beijing (1998), in press.

Google Scholar

[2] Xiao Yangming: Reliability Evaluation and Research of 10kV Distribution Network in Anji County, Beijing North China Electric Power University (2012).

Google Scholar

[3] Zhang Lei, in: Study on Distribution Network Reliability Analysis Method Based on Fault Consequences. chapter, 5, View of Science and Technology (2013).

Google Scholar

[4] Yao Lixiao, Peng Jingning, Wu Li and Wang Qin, in: Reliability Evaluation of Complex Distribution System, volume 20, chapter, 10, Journal of Xi'an University of Technology (2004).

Google Scholar

[5] Guo Yongji, in: Electrical system reliability analysis, edited by Tsing hua University press, Beijing (2003), in press.

Google Scholar

[6] Jia Xiaohong: Study of Tengzhou Urban Distribution Network Reliability, Shandong University (2007).

Google Scholar

[7] Zou Yinrong, in: Influence Factors of Medium Voltage Distribution Network Power Supply Reliability Analysis, volume 20, Rural Electrification(2003).

Google Scholar