The Research on Substation Monitoring System Based on Multi-Sensor Network

Article Preview

Abstract:

According to the needs of the intelligent substation construction, this paper applied the optical fiber sensor technology and wireless sensing technology in the substation monitoring, and designed the substation equipment temperature information acquisition system and communication optical cable monitoring system, which connects to the power supply bureau monitoring center networking and provides the decision-making basis for the substation state control and maintenance. It is conducive to improve the level of substation intellectualization and information sharing.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 756-759)

Pages:

641-645

Citation:

Online since:

September 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Qiang Li, Yangsong Wang, Xuemin Liu. Application situation of temperature monitoring of optic fiber sensor in power system [J]. Power System Protection And Control. 2010 38(1) 135-140.

Google Scholar

[2] Jianfeng Liu. Research on on-Line monitoring system of substation power equipment based on virtual instrument & IEC61850 standard [D]. Wuhan: Huazhong University of Science and Technology. (2008).

Google Scholar

[3] Xiaoli Zhang, Dakai Liang, Jiyun Lu, Jie Zeng. A high reliable optic fiber Bragg grating sensor network design [J]. Chinese Journal of Lasers. 2011 38(1) 1-5.

DOI: 10.3788/cjl201138.0105004

Google Scholar

[4] Yi Tian, Xinbo Huang. On-line monitoring system of temperature inside HV switchgear cabinet [J]. High Voltage Apparatus. 2010 46(3) 64-71.

Google Scholar

[5] Ziyan Zhao, Jianming Liu, Kaisui Zhang. Optical fiber monitoring system in electric power system [J]. Telecommunications for Electric Power System. 2003 (2) 1-4.

Google Scholar

[6] Jinyan Qiu, Ziwen Zhang, Shanguo Mao. Design of antenna for sensor-nodes of wireless sensor network [J]. Computing Engineering and Applications. 2009 45(32) 65-68.

Google Scholar

[7] Xiaobo Li, Xinbo Huang, Shaoying Chen, Jingfu Gan, Qingsheng Liu, Zhuo Pan. ZigBee network-based intelligent substation temperature monitoring system [J]. High Voltage Apparatus. 2011 47(8) 18-21, 32.

Google Scholar

[8] Xuyong Huang, Shihong Miao, Pei Liu, Dongyang Liu. A feasibility research of fault detection for distribution line based on wireless sensor networks [J]. Relay. 2008, 36(8) 11-15.

Google Scholar

[9] M. K Barnoski, S. M Jensen. Fiber waveguides: a novel technique for investigating attenuation characteristics [J]. Appl. Opt. 1976 (15) 2112-2115.

DOI: 10.1364/ao.15.002112

Google Scholar

[10] Tianguo Tang, Chunhua Chen, Haowu Liu. Application of distributed optical fiber sensors into crack monitoring of Dam's foundation [J]. Journal of Transduction Technology. 2007 20(10) 2357-2360.

Google Scholar

[11] Yangguang Wang, Xianggen Yin, Dahai You, Tianqi Xu, Bo Wang, Hanbin Xiang. Application of wireless sensor networks in substation automation systems [J]. Power System Technology. 2009 33(2) 20-26.

DOI: 10.1109/tdc.2008.4517164

Google Scholar

[12] Quandi Wang, Songwang Du, Yongming Li, Zhanlong Zhang, Yongming Yang. A wireless sensor network architecture for substation automation [J]. Information and Control. 2007 36(5) 529-533.

Google Scholar