Implementation of the Wireless Calibration for Electronic Transformer

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Abstract:

In order to adapt to the development of smart substation metering technology , and to improve the efficiency and quality of the on-site calibration of the electronic transformer. On the basis of the existing calibration system, combined with wireless transmission and of new synchronization technologies, focused on the IEC 61850 data and precision clock wireless transmission device to achieve difficult problems in-depth analysis, then the implementation of electronic transformer on-site wireless calibration system is proposed.

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Periodical:

Advanced Materials Research (Volumes 846-847)

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696-700

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November 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Gao Xiang. Digital substation [M] Beijing: China Electric Power Press, (2008).

Google Scholar

[2] Chen Shuyong, Song Shufang, Li Lanxin. Summary of Smart Grid technology [J]. Power System Technology, 2009, 33 (8) : 1-7.

Google Scholar

[3] Bao Hongqi. HGIS and Digital Substation [M] Beijing: China Electric Power Press, (2009).

Google Scholar

[4] Li Laiwei, Li Shuquan, Sun Xiaoli. 21st century energy metering device - On energy metering device development and future [J]. Electric Equipment, 2004, (4) : 1-4.

Google Scholar

[5] Li Jing, Yang Yihan, Yu Wenbin, Zhang Guoqing, Ning Weihong. Energy metering system development overview [J]. Power System Protection and Control, 2009, (37) 11: 130-133.

Google Scholar

[6] Luo Yan, Duan Xiongying, Zhang Mingzhi, Tian Zhiwen, Zou Jiyan. IEC 61850-9-2 process bus synchronization technology [J]. Power System Technology, 2012, 11 (36) : 1-3: 229 - 233.

Google Scholar

[7] IEC. IEC60044-7 instrument transformers part 7 electronic voltage transformers[S]. [S. l. ]: IEC, (1999).

Google Scholar

[8] IEC. IEC60044-7 instrument transformers part 8 electronic current transformers[S]. [S. l. ]: IEC, (2002).

Google Scholar

[9] Zhao Shanglin, HU Minqiang, DOU Xiaobo, etc. IEEE 1588-based digital substation clock synchronization technology [J]. Power System Technology, 2008, 32 (21) : 97-102.

Google Scholar

[10] Jiang Luping, Zeng Xiangjun. Power system based on GPS precision clock synchronization [J]. Power System Technology, 2011, 35 (2) : 201-206.

Google Scholar

[11] Yu Chunyu, Li Hongbin, Ye Guoxiong, etc. Electronic transformer digital output characteristics and communication technology [J]. High Voltage Engineering, 2003, (6) : 7-8, 11.

Google Scholar

[12] Zhu Chao, Huang Can, Mei Jun, etc. Based on FPGA and ARM Intelligent merged cell design [J]. Power System Technology, 2011, 35 (6) : 10-14.

Google Scholar

[13] Ibidem. The real-time publisher/subscriber communication model for distributed substations systems[J]. IEEE Trans on Power Delivery. 2007. 22(3): 1411-1423.

DOI: 10.1109/tpwrd.2007.893939

Google Scholar

[14] KOJOVIC L. Rogowski coils suit relay protection and measure-ment of power system[J]. IEEE Computer Applications in Power, 1997, 10(3): 47-52.

DOI: 10.1109/67.595293

Google Scholar