SF6中GIS绝缘子表面电荷测量系统的研制

C. Gao, B. Qi, Z. Xing, Chengrong Li, Linjie Zhao, Xiaqing Sun
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引用次数: 12

摘要

气体绝缘开关设备以其占地少、绝缘性能好等优点在新建变电站中得到了广泛的应用。在实际运行条件下,GIS将承受不同的电压,如直流、交流和冲击电压。在这种情况下,GIS绝缘子表面会积累电荷,从而增强局部电场,甚至影响闪络。为了研究SF6中实际GIS盘状绝缘子在不同电压下的表面电荷积累特性,本文建立了基于静电电容探头的盘状绝缘子表面电荷测量系统。表面电荷测量装置由所设计的三维控制机构控制,驱动探头对绝缘子表面进行周向和径向的高精度扫描(径向1mm,周向1°)。标定实验结果表明,该系统具有较高的精度和灵敏度。探头对斜面的电荷分辨率可达0.02106pC/(m2·nV),空间分辨率可达6.3 mm2;对弧面的电荷分辨率可达0.0303pC/(m2·nV),空间分辨率可达4.4 mm2。所设计的系统在SF6交流电压下获得了GIS绝缘子表面电荷积累的初步实验结果,保证了系统的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a surface charge measurement system for GIS insulator in SF6
Gas Insulated Switchgear (GIS) has been widely applied in the newly-built transformer substation attributed to its advantages of less land occupied and good insulation performance. Under actual operation conditions, GIS will withstand different kinds of voltages, such as DC, AC and impulse voltages. Under these conditions, there will be charges accumulated on the surface of GIS insulators, which can enhance the local electric field and even affect the flashover. In order to study the surface charge accumulation characteristics of actual GIS disc insulator in SF6 under different voltages, a disc insulator surface charge measurement system based on electrostatic capacitive probe is established in this paper. The surface charge measurement devices are controlled by the designed three-dimensional control mechanism, which can drive the probe to scan the insulator surface in both the circumferential and radial direction with high precision (1mm of radial direction and 1° of circumferential direction). The calibration experimental results shows the high precision and high sensitivity of this system. The charge resolution of the probe for the bevel surface could be up to 0.02106pC/(m2·nV) and the space resolution could be up to 6.3 mm2, the charge resolution of the probe for cambered surface could be up to 0.0303pC/(m2·nV) and the space resolution could be up to 4.4 mm2. The preliminary experimental results of surface charges accumulation on GIS insulator under AC voltage in SF6 which are obtained by designed system ensure the feasibility.
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