Optimum Design Algorithms and Simulation Analysis of Power Transmission Network Based on EPOCHS

Article Preview

Abstract:

This paper studies a new type of power transmission network and power communication transmission technology. First, the working principle and network topology form of power optical transmission network have been presented in this paper, the power budget of the optical transmission model has been given through the loss of optical system and dispersion limit theory. Then the power transmission network and power communication transmission have been simulated through EPOCHS software simulation software, which based on the design aspects of CP transport port, transport protocol and transmission signal, the simulation parameters has been set according to the transmission mathematical model, and the security and efficiency of power transmission network has been proved through the fault signal diagnosis and signal characteristics of delay and jitter. The result of simulation shows that power transmission network power transmission have shorter delay and less jitter, which provides the reliable theory basis for the development of electric power communication network and complex network.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1288-1292

Citation:

Online since:

December 2014

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Li Zhongnian. Power communication . Beijing: national defence industry press, (2009).

Google Scholar

[2] Xue Yusheng, LeiXing, Xue feng, etc. Review on wide-area power system protection. High voltage technology, Vol. 20 (3) , (2012), pp.513-520.

Google Scholar

[3] Li Zhaihua, Bai Xiaoming, Ding Jian, etc. Western Europe blackout accident analysis. Automation of electric power systems, Vol. 31 (1) , (2007), pp.1-3, 32.

Google Scholar

[4] Liu Yu, Shu Zhihuai, Cheng Xiao, etc. 24, large scope blackout accidents from Brazil to see principle of relay protection technology . Automation of electric power systems, Vol. 35 (08) , (2011), pp.12-15.

Google Scholar

[5] Tang Siqing, Zhang Mi, Li Jianshe, etc. The hainan power grid 9. 26, large area blackout accident analysis and summary of the . Automation of electric power systems, Vol. 30 (01), (2006), pp.1-7.

Google Scholar

[6] Lu Jiang, QiXiaoyao, He Guangyu. Smart grid and smart wide-area robot. Proceedings of the csee, Vol. 31 (1) , (2011), pp.1-5.

Google Scholar

[7] Xu Xiaohui. An introduction to the smart grid. Beijing: China power press, (2009).

Google Scholar

[8] Yu Yixin, LuanWenpeng. Smart grid review . Proceedings of the csee, Vol. 29 (34) , (2009), pp.1-5.

Google Scholar

[9] Hu Xuehao. The smart grid, the future power grid development momentum . Power grid technology, Vol. 14 , (2009) : 42-48.

Google Scholar

[10] Chen Laijun, Mei Shengwei, Chen Ying. The smart grid information security and its influence on power system survivability. Control theory and applications, Vol. 29 (2), ( 2012), pp.240-244.

Google Scholar

[11] Miao Xin, Zhang Kai Tian Shiming, etc. The information communication system that support the smart grid . Power grid technology, Vol. 17, (2009) , pp.8-13.

Google Scholar

[12] Sun Zhongwei, Ma Yaning, Wang Yirong, etc. The distribution network automation communication system based on EPON and its security mechanism. Automation of electric power systems, Vol. 08, (2010) , pp.72-75.

DOI: 10.1109/icnidc.2009.5360954

Google Scholar

[13] Xu bingyin, Li Tianyou, Xue Yongduan. Intelligent distribution network and distribution automation. Automation of electric power systems, Vol. 17 , (2009) , pp.38-41.

Google Scholar