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GIS用超高频传感器的校准:不同校准方法的比较及一种采用锥形天线的校准系统测试(英文) 被引量:2
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作者 David Gautschi Pierre Bertholet 《高电压技术》 EI CAS CSCD 北大核心 2011年第11期2643-2648,共6页
Different methods of calibrating ultra high frequency(UHF) sensors for gas-insulated substations(GIS) were investigated in the past.The first approach was to use strip lines,triplates and TEM calibration cells.These c... Different methods of calibrating ultra high frequency(UHF) sensors for gas-insulated substations(GIS) were investigated in the past.The first approach was to use strip lines,triplates and TEM calibration cells.These cells had already been in use for years for example to test the electromagnetic compatibility of electronic devices.The smaller the size of the cell,the higher its bandwidth-but the cell should be large enough to not disturb the electric field with the installed sensor under test.To overcome this problem,a calibration procedure using a gigahertz transverse electromagnetic (GTEM) test cell and a pulsed signal source were introduced in 1997.Although this procedure has many advantages and is easy to understand,measurements show several shortcomings of this calibration method.To overcome the disadvantages of the known systems,a calibration cell using a monopole cone antenna and a metallic ground plane were developed and tested.The UHF sensor was placed in a region with minimum distortion of the electric field due to its installation.Experience shows that the new method for calibrating UHF sensors is necessary in order to overcome the limits in the calibration of large sensors and to suppress the propagation of higher order modes and reflections.Due to its surprisingly simple structure,its low price and low overall measurement uncertainty,it is the preferred method for calibrating UHF sensors for GIS applications. 展开更多
关键词 ultra high frequency(UHF) sensors partial discharge detection partial discharge monitoring gas insulated substations(gis) calibration of sensors calibration cells cone calibration system
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检测GIS局部放电的小型准TEM喇叭天线 被引量:32
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作者 张晓星 谌阳 +1 位作者 唐俊忠 文习山 《高电压技术》 EI CAS CSCD 北大核心 2011年第8期1975-1981,共7页
为克服目前气体绝缘组合电器(GIS)局部放电检测外置传感器的缺点,设计了一种外置小型准TEM喇叭天线传感器,它采用介质填充、楔形立体微带和背腔结构优化等技术手段,既可使喇叭天线小型化,又能得到优良的驻波比特性,可方便地从盆式绝缘... 为克服目前气体绝缘组合电器(GIS)局部放电检测外置传感器的缺点,设计了一种外置小型准TEM喇叭天线传感器,它采用介质填充、楔形立体微带和背腔结构优化等技术手段,既可使喇叭天线小型化,又能得到优良的驻波比特性,可方便地从盆式绝缘子处接收局部放电产生的电磁泄漏信号,并能有效抑制周围空间低频电磁干扰。理论计算和实验室实测特性数据表明,该宽带天线在超高频(UHF)频段内,有较好的检测性能,并具有多频段选择特性。最后,在实验室GIS模拟缺陷装置上,将TEM喇叭天线与已有的微带贴片天线进行了局放测量效果的对比。 展开更多
关键词 气体绝缘组合电器(gis) 局部放电 超高频(UHF) 介质填充 微带天线 TEM喇叭天线
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A novel algorithm for frequency dependent modeling of ferrite ring and its optimum design to study VFTO behaviors within GIS
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作者 Mehrdad MAJIDI Hamid JAVADI Moein MANBACHI 《Frontiers in Energy》 SCIE CSCD 2014年第1期90-100,共11页
One of the fundamental issues in gas insulated substations (GIS) which has destructive effects on GIS equipment is the very fast transient over-voltages (VFTOs). This paper models a 400/230 kV substation in order ... One of the fundamental issues in gas insulated substations (GIS) which has destructive effects on GIS equipment is the very fast transient over-voltages (VFTOs). This paper models a 400/230 kV substation in order to study the effects of VFTO extensively implemen- ted on EMTP-RV. In addition, the application of ferrite rings for suppressing VFTOs is assessed thoroughly. The main advantage of this paper is its new proposed algorithm according to the ferrite ring frequency dependent modeling that is validated with experimental results. This paper examines the effects of three compositions of the ferrite ring on VFTO suppression. Moreover, it estimates the dimension of the ferrite ring based on the SF6 gas insulation withstand and the maximum effect of ferrite rings on VFTO suppression constraint with the COMSOL multiphysics software. Furthermore, it gains VFTO attenuated percentages due to the installation of the ferrite ring in different GIS nodes. Finally, it analyzes the offered VFTO amendment technique in various GIS switching scenarios. 展开更多
关键词 comsol multiphysics EMTP-RV ferrite ring gas insulated substations gis transient over-voltage insulation coordination
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