[Oral Presentation]Fast Transient Characteristics Induced by Breaker Operation in a Pumped Storage Power Plant

Fast Transient Characteristics Induced by Breaker Operation in a Pumped Storage Power Plant
ID:210 Submission ID:310 View Protection:ATTENDEE Updated Time:2021-12-03 10:48:07 Hits:473 Oral Presentation

Start Time:2021-12-17 09:00 (Asia/Shanghai)

Duration:15min

Session:[D] High voltage and insulation technology » [D5] Session 28

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Abstract
In a pumped storage power plant, there are long high-voltage cable connected the GIS and the main transformer, inducing different fast transient characteristics compared with conventional power substation. However, pumped-storage power plants are usually in remote mountainous areas, suitable testing opportunities are rare. Therefore, there are few research results on the field measurement of fast transient in pumped-storage power plants. In this paper, fast transients were measured in a 500kV pumped storage power plant. Sensors were developed and installed inside the GIS. The results indicated that the maximum amplitude levels of fast transient are 1.5 P.U. (close) and 1.14 P.U. (open). The voltage steepness of single strike is 0.777kV/ns. The frequency characteristics of fast transient waveforms in the pumped storage power station were also analyzed. The analysis results indicated the frequency components distribution. The high frequency component of fast transient above 10 MHz is very small. The field measurement data and analysis results provide a reference for reducing electromagnetic interference, developing standard waveform, optimizing insulation coordination and overvoltage mitigation methods.
Keywords
GIS, fast transient, waveform characteristics, pumped storage power station
Speaker
Wei Wang
State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources, North China Electric Power University, Beijing P.R. China, 102206;

Submission Author
Lijun Zhao Hebei Fengning Pumped Storage Co., Ltd., Fengning 068350, China
Lei Wang China Electric Power Research Institute, Wuhan 430074, Hubei Province, China;
Binqiang Xia State Grid Xinyuan Company LTD., Beijing P.R. China, 100761;
Liang Tang Hebei Fengning Pumped Storage Co., Ltd., Fengning 068350, China
Wei Wang State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources, North China Electric Power University, Beijing P.R. China, 102206;
Kuigang Wang Zhejiang Xianju Pumped Storage Power Co., Ltd., Xianju 317312, China.
国明 马 华北电力大学新能源电力系统国家重点实验室
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