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Effects of external shed damage on voltage and electric field profile for overhead insulators

机译:外部脱落损坏对架空绝缘子的电压和电场分布的影响

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摘要

Purpose - This paper aims to present simulation studies on voltage and electric field characteristics for imperfect ceramic insulators using QuickField™ software. Based on previous studies, it is accepted that string insulator can still serve the transmission line although imperfect of certain insulator exist in a string. However, different materials of porcelain and glass type had made these insulators own different abilities to carry electricity to be transferred to the consumers. Design/methodology/approach - Cap and pin type of porcelain and glass insulators are used as the main subject for comparison. The simulation works begins with modeling a single insulator, followed by string of ten insulators with their respective applied voltage, that is, 11 and 132 kV. The insulator was modeled in alternate current conduction analysis problem type using QuickField Professional Software. Technical parameters for porcelain and glass insulator were manually inserted in the modeling. Findings - This paper presents an investigation on the influence of broken porcelain and glass insulators in string for voltage and electric field characteristics. For single insulator, the voltage distribution may literally reduce when experiencing external damages; whereby the broken porcelain insulator condition is worse than the glass insulator. In terms of electric field distribution, the glass insulator is badly affected compared with the porcelain insulator, as it is pulverized comprehensively. Research limitations/implications - Further work needs to be done to establish whether the experiments of these simulations study will present coequal outcomes. This study endeavors in promoting a good example of voltage and electric field characteristics across high voltage (HV) insulator with the presence of broken insulator in the string. Practical implications - This study is beneficial to future researchers and manufacturing companies in strategic management and research planning when they involve in the field of HV insulators. It will also serve as a future reference for academic and study purposes. This research will also educate many people on how HV insulators work. Social implications - This study will be helpful to the industry and business practitioners in training for the additional results and knowledge to be updated in the area of HV insulators. Originality/value - This paper presents the analysis of porcelain and glass insulators according to their respective logic conditions when broken. Consequently, the existence of a damage insulator in a string may alter the distribution of voltage and electric field which may ultimately lead to the insulation breakdown after some time. This is because the broken insulator may cause other insulators to withstand the remaining voltage allocated for that particular insulator and may affect the insulators in terms of the life span. Therefore, the distribution of voltage and electrical field characteristics in the presence of broken insulators had been studied in this project.
机译:目的-本文旨在使用QuickField™软件对不完善的陶瓷绝缘子的电压和电场特性进行仿真研究。根据以前的研究,尽管某些绝缘子存在于串中,但串绝缘子仍然可以为传输线服务。然而,瓷器和玻璃类型的不同材料使这些绝缘子具有不同的承载电力的能力,以传递给消费者。设计/方法/方法-比较瓷和玻璃绝缘子的帽和针类型。仿真工作首先是对单个绝缘子建模,然后是十个绝缘子串,分别带有各自的施加电压,分别为11 kV和132 kV。使用QuickField Professional软件以交流电传导分析问题类型对绝缘子进行建模。在模型中手动插入了瓷器和玻璃绝缘子的技术参数。调查结果-本文介绍了破碎的瓷器和玻璃绝缘子串对电压和电场特性的影响的研究。对于单个绝缘子,当遭受外部损坏时,电压分布可能会真正降低。因此,破裂的瓷绝缘子的状况比玻璃绝缘子差。就电场分布而言,与陶瓷绝缘子相比,玻璃绝缘子受到了很大的影响,因为它已被全面粉碎。研究的局限性/意义-需要做进一步的工作来确定这些模拟研究的实验是否会带来同等的结果。这项研究致力于在高电压(HV)绝缘子上出现串中出现绝缘子破损的情况下,提出一个很好的电压和电场特性示例。实际意义-这项研究对涉及高压绝缘子领域的未来研究人员和制造公司的战略管理和研究计划很有帮助。它还将作为学术和学习目的的将来参考。这项研究还将教育许多人有关高压绝缘子的工作原理。社会影响-这项研究将为工业和商业从业人员提供培训,以帮助他们了解高压绝缘子领域中需要更新的其他成果和知识。原创性/价值-本文根据瓷器和玻璃绝缘子破裂时的逻辑条件,进行了分析。因此,串中存在损坏的绝缘体可能会改变电压和电场的分布,最终可能导致一段时间后绝缘击穿。这是因为损坏的绝缘子可能导致其他绝缘子承受分配给该特定绝缘子的剩余电压,并可能影响其寿命。因此,在该项目中研究了绝缘子破裂时的电压和电场特性分布。

著录项

  • 来源
    《Military operations research》 |2019年第4期|468-476|共9页
  • 作者单位

    Department of Electrical Power Engineering, Faculty of Electrical and Electronic Engineering, Universiti Tun Hussein Onn Malaysia (UTHM), Malaysia;

    Department of Electrical Power Engineering, Faculty of Electrical and Electronic Engineering, Universiti Tun Hussein Onn Malaysia (UTHM), Malaysia;

    Department of Electrical Power Engineering, Faculty of Electrical and Electronic Engineering, Universiti Tun Hussein Onn Malaysia (UTHM), Malaysia;

    Department of Electrical Power Engineering, Faculty of Electrical and Electronic Engineering, Universiti Tun Hussein Onn Malaysia (UTHM), Malaysia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ceramic insulator; Electric field distribution; Finite element software; Voltage distribution;

    机译:陶瓷绝缘体;电场分布;有限元软件;电压分布;

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