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Understanding Electrical Treeing Phenomena in XLPE Cable Insulation Adopting UHF Technique

机译:了解采用UHF技术的XLPE电缆绝缘中的电树现象

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Understanding Electrical Treeing Phenomena in XLPE Cable Insulation Adopting UHF Technique A major cause for failure of underground cables is due to formation of electrical trees in the cable insulation. A variety of tree structure can form from a defect site in cable insulation viz bush-type trees, tree-like trees, fibrillar type trees, intrinsic type, depending on the applied voltage. Weibull studies indicate that a higher applied voltage enhances the rate of tree propagation thereby reducing the life of cable insulation. Measurements of injected current during tree propagation indicates that the rise time and fall time of the signal is of few nano seconds. In the present study, an attempt has been made to identify the partial discharges caused due to inception and propagation of electrical trees adopting UHF technique. It is realized that UHF signal generated during tree growth have signal bandwidth in the range of 0.5-2.0 GHz. The formation of streamer type discharge and Townsend type discharges during tree inception and propagation alters the shape of the tree formed. The UHF signal generated due to partial discharges formed during tree growth were analyzed adopting Ternary plot, which can allow one to classify the shape of tree structure formed.
机译:了解采用UHF技术的XLPE电缆绝缘中的电树现象造成地下电缆故障的主要原因是电缆绝缘中形成了电树。电缆绝缘层中的缺陷部位可以形成各种树状结构,即灌木型树,树状树,原纤维型树,固有型树,具体取决于施加的电压。 Weibull研究表明,更高的施加电压会提高树木传播的速度,从而缩短电缆绝缘的寿命。在树传播期间对注入电流的测量表明,信号的上升时间和下降时间只有几纳秒。在本研究中,已尝试识别由于采用UHF技术的电树的萌芽和传播而引起的局部放电。已经认识到,在树木生长期间产生的UHF信号具有在0.5-2.0GHz范围内的信号带宽。在树的形成和传播过程中,流光型放电和汤森德型放电的形成改变了所形成的树的形状。利用三元图分析了由于树木生长过程中形成的局部放电而产生的UHF信号,这可以使人们对形成的树木结构的形状进行分类。

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