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Method for Measurement of VFTO Based on GIS Disk Sensor |
Wu Hao, Li Chengrong, Xu Hairui, Zhang Bo |
State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources North China Electric Power University Beijing 102206 China |
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Abstract A capacitive sensor based on the access port in the switchgear is developed for the measurements of very fast transients overvoltages(VFTO) caused by the disconnect operation in GIS. The factors which decide the frequency characteristics of the sensor are discussed. The high frequency response characteristic is decided by high voltage capacitor and its the parasitic inductance, and the low frequency characteristic is decided by the low voltage capacitor and the equivalent impedance of the oscilloscope. The amplitude frequency response and the step response of the sensor were performed. The measurement results indicate the intrinsic response time is less than 1.75ns, the unsettle of the response in the range of 10kHz~80MHz is within ±1db; The sensor is mounted on a GIS test setup to measure the transients induced by the gap discharge which is used to simulate the disconnector switching operation, the measurement results demonstrate that the sensor is able to measure the transients with ns rise-time successfully.
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Received: 31 December 2010
Published: 20 March 2014
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[1] Mepplelink J, Diederich K, Feser K, et al. Very fast transients in GIS[J]. IEEE Transactions on Power Delivery, 1989, 4(1): 223-233. [2] 谷定燮, 修木洪, 戴敏. 1000kV GIS变电所VFTO特性研究[J]. 高电压技术, 2007, 33(11): 27-32. Gu Dingxie, Xiu Muhong, Dai Min. Study on VFTO of 1 000kV GIS substation[J]. High Voltage Engineering, 2007, 33(11): 27-32. [3] Working Group 33/13209. Very fast transient phenomena associated with gas insulated substations: CIGRE Report 33213[R]. Paris, France, 1998. [4] 陈维江, 颜湘莲, 王绍武. 气体绝缘开关设备中特快速瞬态过电压研究的新进展[J]. 中国电机工程学报, 2011, 31(31): 1-11. Chen Weijiang, Yan Xianglian, Wang Shaowu. Recent progress in investigations on very fast transient overvoltage in gas insulated switchgear[J]. Proceedings of the CSEE, 2011, 31(31): 1-11. [5] Boggs S A, Fujimoto N. Techniques and instrument for measurement of transients in gas insulated switchgear[J]. IEEE Transactions on Electrical Insulation , 1984, 19(2): 87-92. [6] 岳功昌, 刘卫东, 陈维江. 气体绝缘开关设备中特快速瞬态过电压的全过程测量方法[J]. 中国电机工程学报, 2011, 31(31): 18-27. Yue Gongchang, Liu Weidong, Chen Weijiang. Measurement methods of very fast transient overvoltage in gas insulated switchgear with complete process[J]. Proceedings of the CSEE, 2011, 31(31): 18-27. [7] Nojima K, Nishiwki S, Okubo H, et al. Measurement of surge current and voltage waveforms using optical-transmission technique[J]. IEE Proceedings C Generation, Transmission & Distribution, 1987, 134(6): 415-422. [8] Shihab S. A fast response impulse voltage measuring system for testing of gas insulated substation equipment[J]. IEEE Transaction on Power Delivery, 1986, 1(3): 42-47. [9] 史保壮, 张文元, 邱毓昌. 测量气体绝缘变电站中快速暂态过电压的微分积分方法[J]. 中国电机工程学报, 1999, 19(5): 59-61, 29. Shi Baozhuang, Zhang Wenyuan, Qiu Yuchang. Differentiating/integrating system for the measurement of very fast transient overvoltages in GIS[J]. Proceedings of the CSEE, 1999, 19(5): 59-61, 29. [10] Christian J, Xie J. Very fast transient oscillation measurement at three gorges left bank hydro power plant[C]. International Conference on Power System Technology, 2006. [11] Yanabu S, Murase H, Aoyagi H, et al. Estimation of fast transient overvoltage in gas-insulated substation[J]. IEEE Transaction on Power Delivery, 1990, 5(4): 1875-1882. [12] Raković D. Materials Science[M]. Naučna Knjiga, Beograd, Yugoslavia, 1994. [13] High voltage test techniques with very fast impulses, part 1: measuring systems for very fast front overvoltages generated in gas insulated substations[S]. IEC1321-1, 1994. [14] 陈维江, 李志兵, 孙岗, 等. 特高压气体绝缘开关设备中特快速瞬态过电压特性的试验研究[J], 中国电机工程学报. 2011, 31(31): 38-47. Chen Weijiang, Li Zhibing, Sun Gang, et al. Experimental research on the characteristics of very fast transient overvoltage in ultra high voltage gas insulated switchgear[J]. Proceedings of the CSEE 2011, 31(31): 38-47. |
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