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Source Strength Impact Analysis on Insulator Flashover under Contaminated Conditions.

机译:污染条件下对绝缘子闪络的源强度影响分析。

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摘要

Transmission voltages worldwide are increasing to accommodate higher power transfer from power generators to load centers. Insulator dimensions cannot increase linearly with the voltage, as supporting structures become too tall and heavy. Therefore, it is necessary to optimize the insulator design considering all operating conditions including dry, wet and contaminated. In order to design insulators suitably, a better understanding of the insulator flashover is required, as it is a serious issue regarding the safe operation of power systems. However, it is not always feasible to conduct field and laboratory studies due to limited time and money.;The desire to accurately predict the performance of insulator flashovers requires mathematical models. Dynamic models are more appropriate than static models in terms of the instantaneous variation of arc parameters. In this dissertation, a dynamic model including conditions for arc dynamics, arc re-ignition and arc motion with AC supply is first developed.;For an AC power source, it is important to consider the equivalent shunt capacitance in addition to the short circuit current when evaluating pollution test results. By including the power source in dynamic models, the effects of source parameters on the leakage current waveform, the voltage drop and the flashover voltage were systematically investigated. It has been observed that for the same insulator under the same pollution level, there is a large difference among these flashover performances in high voltage laboratories and real power systems. Source strength is believed to be responsible for this discrepancy. Investigations of test source strength were conducted in this work in order to study its impact on different types of insulators with a variety of geometries.;Traditional deterministic models which have been developed so far can only predict whether an insulator would flashover or withstand. In practice, insulator flashover is a statistical process, given that both pollution severity and flashover voltage are probabilistic variables. A probability approach to predict the insulator flashover likelihood is presented based on the newly developed dynamic model.
机译:全世界的传输电压正在增加,以适应从发电机到负载中心的更高功率传输。绝缘体的尺寸不能随电压线性增加,因为支撑结构变得太高和太重。因此,有必要考虑所有工作条件(包括干燥,潮湿和污染)来优化绝缘子设计。为了适当地设计绝缘子,需要对绝缘子闪络有更好的理解,因为这是关于电力系统安全运行的一个严重问题。但是,由于时间和金钱的限制,进行现场和实验室研究并不总是可行的。准确预测绝缘子闪络性能的愿望需要数学模型。就电弧参数的瞬时变化而言,动态模型比静态模型更合适。本文首先建立了一个动态模型,该模型包括电弧动力学,电弧重燃和使用交流电源时电弧运动的条件。对于交流电源,除了短路电流外,考虑等效并联电容也很重要。在评估污染测试结果时。通过将电源包括在动态模型中,系统地研究了电源参数对泄漏电流波形,电压降和闪络电压的影响。已经观察到,对于在相同污染水平下的相同绝缘子,在高压实验室和实际电力系统中,这些闪络性能之间存在很大差异。据信源强度是造成这种差异的原因。为了研究其对具有各种几何形状的不同类型绝缘子的影响,进行了测试源强度的研究。到目前为止,开发的传统确定性模型只能预测绝缘子会闪络还是可以承受。实际上,考虑到污染的严重程度和闪络电压都是概率变量,绝缘子闪络是一个统计过程。基于新开发的动力学模型,提出了一种预测绝缘子闪络可能性的概率方法。

著录项

  • 作者

    He, Li.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Electrical engineering.;Energy.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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