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Partial discharge characteristic of electrical trees in polymeric cable insulation

机译:聚合物电缆绝缘中电树的局部放电特性

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摘要

The growth mechanism of electrical tree in high voltage and extra high voltage dielectric system is needed for early identification, in order to resist the complete insulation failure. In power system equipment, electrical tree formation prevention is very much crucial for reliable and long term operation of cable section. There are so many varieties of electrical tree structure can formed from a weak region or a imperfection site in cable insulation viz branch-type trees, bush-type trees and bush-branch type trees depending on the voltage applied. Electrical treeing was developed in a needle-plane geometry using 5µm tip radius hyperbolic needle shape and a 2 mm gap from the tip of the needle to plane electrode in polymeric samples. This project was conducted by simulations based work in order to understand the characteristics of electrical trees in solid dielectric materials. In this work, electrical tree formation mechanism in solid dielectric material was modeled using MATLAB environment and done experimental work in high voltage laboratory with the application of 100 kV AC source with 50 Hz supply voltage. After the experiment the sample was viewed under FESEM for observation of electrical tree growth. It was found that the FESEM was particularly useful for searching for electrical damage in the polymeric insulation material where treeing phenomena takes place.
机译:早期识别需要高压和特高压电介质系统中树的生长机制,以抵抗完全的绝缘故障。在电力系统设备中,防止电气树的形成对于电缆段的可靠和长期运行至关重要。从电缆绝缘的薄弱区域或缺陷部位可以形成各种各样的电气树结构,具体取决于所施加的电压,即分支型树,灌木型树和灌木分支型树。在针状平面几何形状中开发了电树,使用了5μm的尖端半径双曲线针头形状,并且在聚合物样品中,从针尖到平面电极之间的间隙为2 mm。该项目是通过基于模拟的工作进行的,目的是了解固态电介质材料中电树的特性。在这项工作中,在MATLAB环境下对固体介电材料中的电树形成机理进行了建模,并在高压实验室中应用了100 kV AC电源和50 Hz电源电压进行了实验工作。实验后,在FESEM下观察样品,以观察电树的生长。发现FESEM对于在发生树状现象的聚合物绝缘材料中寻找电损坏特别有用。

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    Behera S S;

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