DocumentCode :
2449558
Title :
Reliable control and protection system for the Tian-Guang HVDC transmission project
Author :
Jiangguo, Yu ; Hong, Rao ; Tao, Shang ; Baoshu, Peng ; Brandt, D. ; Esters, P.-H. ; Messner, J. ; Wild, G. ; Wolf, S.
Author_Institution :
State Power South Co., Guangzhou, China
Volume :
2
fYear :
2002
fDate :
2002
Firstpage :
688
Abstract :
The Tian-Guang HVDC power transmission system delivers 1800 MW over 960 km from converter stations (Bipolar 900 MW) at Tianshengqiao in Guangxi Province to the Guangzhou converter station in Guangdong Province. Both converter stations are connected to the respective AC networks through 220 kV buses. The HVDC transmission system is an important power link in the Southern China electric power network and transfers bulk power to Guangzhou area together with 500 kV AC lines in parallel. This paper describes the control and protection (C&P) system of the Tian-Guang HVDC power transmission project. All aspects regarding the used structure and redundancy are addressed. The C&P system includes also the communication system, the measuring system, the data acquisition systems (SER, TFR) and the master clock system. The complete design process including off-site and on-site tests is described as well. Special control functions and all new technologies which are used will be covered. Innovations like the decentralised I/O units with the redundant optical field bus, the hybrid optical measuring system, active DC filters and the new electrode tine monitoring system are introduced. The test results of the off-site tests and the field testing are discussed. Finally, operating experience from the first operation in December 2000 to the present, is reported as well.
Keywords :
HVDC power transmission; power system measurement; power transmission control; power transmission protection; project engineering; substations; 1800 MW; 220 kV; 500 kV; 900 MW; 960 km; China; Tian-Guang HVDC transmission project; active DC filters; decentralised 1/O units; design process; electrode tine monitoring system; field testing; hybrid optical measuring system; master clock system; off-site tests; operating experience; power network control; power network protection; Communication system control; Control systems; HVDC transmission; Optical filters; Optical network units; Power system protection; Power system reliability; Power transmission; Redundancy; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power System Technology, 2002. Proceedings. PowerCon 2002. International Conference on
Print_ISBN :
0-7803-7459-2
Type :
conf
DOI :
10.1109/ICPST.2002.1047486
Filename :
1047486
Link To Document :
بازگشت