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Design of UHF-SHF sensor for the detection of GIS partial discharge

机译:用于检测GIS局部放电的UHF-SHF传感器的设计

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UHF is one of the effective methods which could detect partial discharge in GIS. However, more and more GIS have insulator of metal enclosed structure which leads UHF electromagnetic wave caused by partial discharge could not pass through the insulator. Fortunately, there are little slits between the metal band and the GIS shell which maybe lets higher frequency electromagnetic wave pass. It is possible to detect the partial discharge for GIS with metal enclosed insulator structure by higher frequency. In this paper, we measured the GIS equipment in the laboratory, set up the 1:1 model of GIS equipment based on the measured data. By the simulation software, we simulated the GIS partial discharge by giving a Gaussian pulse signal which is similar to the partial discharge, got the electromagnetic wave spectrum which can spread through the slits between the metal band and the GIS shell. On the basis of the data of the electromagnetic wave spectrum which can be detected, we designed an antenna which could be used for the detection of GIS with metal enclosed insulator structure. With usage of HFSS electromagnetic simulation software, we built up models of two kinds of sensors and repeatedly changed the size of the antenna to the optimal structure according to the simulation optimization data. At last, we got the standing wave ratio direction, radiation pattern, and 3D polar plot of the two sensors. Considering factors such as structural features and portable use, we compared the two kinds of antenna performance difference. The results show that the electromagnetic wave spectrum which can be detected of GIS partial discharge is 0.5-4 GHz, and in this band, the micro-strip antenna is more suitable than equiangular spiral antenna in the detection of partial discharge in GIS.
机译:UHF是可以检测到GIS部分放电的有效方法之一。然而,越来越多的GIS具有金属封闭结构的绝缘体,其引导由局部放电引起的UHF电磁波不能通过绝缘体。幸运的是,金属带和GIS外壳之间几乎没有狭缝,这可能会让更高的频率电磁波通过。可以通过更高的频率检测GIS的局部放电。在本文中,我们在实验室中测量了GIS设备,基于测量数据设置了1:1模型GIS设备。通过仿真软件,我们通过提供类似于局部放电的高斯脉冲信号模拟了GIS偏放电,得到了可以通过金属带和GIS壳之间的狭缝扩散的电磁波谱。基于可以检测的电磁波谱的数据,我们设计了一种天线,该天线可用于通过金属封闭的绝缘体结构检测GIS。利用HFSS电磁仿真软件的使用,我们建立了两种传感器的模型,并根据模拟优化数据反复改变天线的大小以最佳结构。最后,我们得到了两个传感器的站立波比方向,辐射图案和3D极性图。考虑到结构特征和便携式使用等因素,我们比较了两种天线性能差异。结果表明,可以检测到GIS局部放电的电磁波谱是0.5-4GHz,并且在该频段中,微剥离天线比在GIS中的局部放电检测中的偏向螺旋天线更合适。

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