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Partial Discharge Pattern Detected by New Design Partial Discharge Sensors

机译:新设计的局部放电传感器检测局部放电模式

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This research discusses the design and testing of the bowtie antenna as a partial discharge sensor (PD). In this design, there are three types of bowtie antennas which are simulated with high frequency structure simulator (HFSS) software with various shapes and sizes, namely double layer bowtie antenna with edge modification, doube layer bowtie antenna with middle slice modification and single layer bowtie antenna with edge modification. The three bowtie antennas are designed to get the frequency of response according to the frequency of PD appearance. The three of bowtie antenna is designed with FR4_epoxy substrate which has dimensions of length and width of the substrate is 160 mm and 54 mm, thickness of 1.6 mm which then process the bowtie antenna will be implemented on printed cicuit board (PCB) material. Antenna characteristics which include return loss (RL), bandwidth and voltage standing wave ratio (VSWR) will be seen from the results based on simulation and measurement results using a vector network analyzer (VNA). Testing of the three bowtie antennas is done using needle-plane electrodes. Then the antenna is connected to the oscilloscope so that the signal captured by the antenna can be detected. The measurement of the three bowtie antennas was carried out at three voltage levels namely 6 kV, 6.5 kV and 7 kV. So, it can be known the PD pattern detected by new design antenna as PD sensor. It can also be known sensitivity of the three antennas as the best in detecting PD signals on each antenna with increasing voltage levels that have been determined and reviewed from the side of the antenna characteristic parameters obtained based on the simulation results and antenna measurement results using VNA.
机译:这项研究讨论了作为局部放电传感器(PD)的领结天线的设计和测试。在此设计中,使用三种形状和尺寸的高频结构模拟器(HFSS)软件对三种类型的领结天线进行仿真,即带有边缘修饰的双层领结天线,具有中片修饰的双层管状领结天线和单层领结。带边缘修饰的天线。设计三个蝴蝶结天线,以根据PD出现的频率获得响应频率。蝶形天线的三个是用FR4_epoxy基板设计的,基板的长度和宽度尺寸分别为160 mm和54 mm,厚度为1.6 mm,然后处理蝶形天线将在印刷电路板(PCB)材料上实现。基于矢量和矢量网络分析仪(VNA)的仿真和测量结果,可以看到包括回波损耗(RL),带宽和电压驻波比(VSWR)在内的天线特性。使用针平面电极对三个领结天线进行测试。然后将天线连接到示波器,以便可以检测到天线捕获的信号。三个领结天线的测量是在三个电压级别(即6 kV,6.5 kV和7 kV)下进行的。因此,可以知道新设计的天线作为PD传感器检测到的PD方向图。还可以知道,这三个天线的灵敏度是检测每个天线上PD信号的最佳方法,该电压随电压水平的升高而提高,这些电压水平已从基于模拟结果和使用VNA的天线测量结果获得的天线特性参数的一侧确定并审查。 。

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