Research on the Monitoring Technology for Mountain Substation Geological Safety Based on the Optical Fiber Sensing Net

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Substation forced to be built in the mountains, with complex geological conditions and harsh natural conditions. The summer rainy season and the winter snow and ice have caused serious threats to the security on the mountain substation geological safety and have great impact on the power grid stability. Currently, there is no effective and continuous monitoring tool for mountain substation geological safety. Due to active crustal movement, earthquake, mudslides and other geological disasters increased significantly in some areas. Substation has undergone a number of serious geological security incidents. To solve such problems, the project intends to research and apply on the mountain substation geological safety monitoring. Firstly, analyzes the necessity of geological safety monitoring. Secondly, introduces the distributed optical fiber sensing technology, optical monitoring systems and geological safety monitoring system. Finally, makes a simulation experiment and demonstrates the feasibility and effectiveness of the method.

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2897-2901

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Rao Yunjiang, Feng Sha, Ran Zengling, Jiang Qi. Ultra-Long Distance Fiber Bragg Grating Sensor System [J]. Journal of University of Electronic Science and Technology of China, 2011(05).

Google Scholar

[2] Shao Jun, Li Wu, Liu Junhua. Research on FBG Temperature Compensation Technology [J]. Science & Technology Information, 2011(28).

Google Scholar

[3] Lu Huanjia, Yu Li, Dong Qifen, Pan Hao, Ye Lingjie. Design of building environment monitoring system based on wireless sensor network [J]. Journal of Zhejiang University of Technology. 2011(06).

Google Scholar

[4] Zhu Yan. Research on optical fiber sensing technology application in power system [J]. Modern Industrial Economy and Informationization. 2011(10).

Google Scholar

[5] Hongliang Wang, Haobin Dong, Study of the Distributed Ground-Tunnel Pressure Measurement and Control Method[C]/The 2010 International Conference on Mechanical and Aerospace Engineering, KL, 2010: 48-51.

Google Scholar

[6] Hongliang Wang, Haobin Dong, Design and Simulation of LQR Controller with the Linear Inverted Pendulum, ICECE 2010, 699-702.

Google Scholar

[7] Meng Ling, Jia Lei, Jiang Mingshun, Miao Fei, Sui Qingmei, Qian Jianxun.  On-line temperature monitoring systems for aluminum reduction based on fiber bragg grating [J]. Chinese Journal of Sensors and Actuators. 2011(02).

Google Scholar

[8] Chang Fei.  Application of optical fiber and raster sensing technique in fire warning system [J]. Building Electricity. 2007(12).

Google Scholar

[9] Wu Hongwei, Li Jie.  Designing distributed temperature sensor system based on fiber bragg grating[J]. Coal Mine Machinery. 2010(09).

Google Scholar

[10] Zhang Zhibin, Wang Yufen, Li Changjiang.  ZigBee wireless Sensor Networks in Gas Monitoring System application [J]. Mining Machinery. 2007(11).

Google Scholar