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Study on Leakage Current Characteristics and Electrical Equivalent Circuit Properties of Aged Polymer Insulator under Artificial Environmental Condition

机译:人工环境条件下老聚合物绝缘子漏电流特性及电力等效电路特性研究

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The most common kind of insulators that is currently used as outdoor insulators is ceramic insulator, for their advantageous characteristics such as high resistance against thermal and corrosion as well as good mechanical strength. However, especially in areas with high humidity and high pollutant level, the replacement frequency of ceramic or glass insulators are quite often due to the pollutant that easily stick on the insulators surface can decrease the insulator performance, causing flashover to occur sooner than it is supposed to. Polymer insulator is then introduced to solve this problem since it has better hydrophobicity which allows it to repel pollutants and light in weight. There have been many research conducted regarding polymer insulator, but until now the field implementation is still limited, especially in Indonesia. The effect of the tropical climate and high pollution level still has to be continuously studied on the polymer insulator performance. One of the parameters that determine the performance quality of an insulator is leakage current (LC). This paper discusses the leakage current characteristics of a polymer insulator when it is artificially aged and affected by different environmental condition. Additionally, electrical equivalent circuit parameters of polymer insulator in each environmental conditions are also studied through simulation of outdoor insulator using ATPDraw software. There are eight different LC waveforms consisting of new and aged polymer insulator from each experimental conditions (4 different conditions) that are compared and taken into simulation to analyze the electrical equivalent circuit parameters such as capacitance, nonlinear resistance, and number of arc models of each polymer insulator condition. The key parameters that determine the similarity between the measured and simulated LC waveforms include the LC magnitude, Total Harmonic Distortion (THD) and dominant harmonic number.
机译:目前用作户外绝缘体的最常见的绝缘体是陶瓷绝缘体,其有利的特性,例如高耐热和腐蚀的电阻以及良好的机械强度。但是,特别是在具有高湿度和高污染物水平的区域,陶瓷或玻璃绝缘体的替代频率通常是由于污染物容易粘在绝缘体表面上可以降低绝缘体性能,导致闪光透过比假设更快地发生到。然后引入聚合物绝缘体以解决该问题,因为它具有更好的疏水性,使其允许其重量污染物和光。有很多关于聚合物绝缘体的研究,但直到现在,现场实施仍然有限,特别是在印度尼西亚。在聚合物绝缘体性能上,必须持续研究热带气候和高污染水平的影响。确定绝缘体的性能质量的参数之一是漏电流(LC)。本文讨论了当其在人工老化并受到不同环境条件的影响时聚合物绝缘体的漏电流特性。另外,通过使用ATPDraw软件的户外绝缘体模拟,还研究了各种环境条件中的聚合物绝缘体的电力等效电路参数。存在八种不同的LC波形,由新的和老化的聚合物绝缘体组成,来自每个实验条件(4种不同的条件),并进行了仿真,以分析电气等效电路参数,例如电容,非线性电阻和每个电弧模型数聚合物绝缘体条件。确定测量和模拟LC波形之间相似度的关键参数包括LC幅度,总谐波失真(THD)和主导谐波数。

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