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State of the art in insulation of gas insulated substations: main issues, achievements, and trends

机译:气体绝缘变电站的绝缘技术现状:主要问题,成就和趋势

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摘要

Nowadays power delivery grids face many challenges, among which are (1) steady growth of urban and suburban areas and the consequent reduction of space available for power facilities, (2) quest for higher power quality and availability, and (3) growing concerns about the visual impact and the electromagnetic compatibility of high voltage systems. During the last few decades, these challenges have driven R&D efforts in the field of electrical substations toward more compact, reliable, and environmentally compatible facilities. Gas insulated substations (GIS) fit these needs, although at high investment cost, mainly because of the performances of their insulation. GIS and gas insulated transmission lines (GITL or GIL) consist basically of a conductor supported by solid insulators inside an enclosure, which is filled with sulfur hexafluoride (SF6) gas [1], [2] (see Figure 1). The excellent dielectric properties of SF6 [3] make GIS much more reliable than conventional air insulated substations [4]; they also consume much less power and take up much less space. GIS components have a modular design, are filled with the minimum amount of SF6, are preassembled and tested in a controlled environment in the factory, have acceptable lifecycle costs, and can be used for indoor and outdoor applications. Other noteworthy features include an expected service lifetime in excess of 50 years, motor-operated self-lubricating mechanisms, corrosion resistance, and low fault probability [4], [5]. Recently, emphasis has been placed on partial discharge (PD) measurement techniques in GIS [6], and on the use of GIS in high voltage (HV) DC systems [7], [8].
机译:如今,输电网络面临许多挑战,其中包括:(1)城市和郊区的稳定增长以及随之而来的电力设施可用空间的减少;(2)寻求更高的电能质量和可用性;(3)越来越多的关注高压系统的视觉冲击和电磁兼容性。在过去的几十年中,这些挑战促使变电站领域的研发工作朝着更加紧凑,可靠和环境兼容的设施发展。气体绝缘变电站(GIS)满足了这些需求,尽管投资成本很高,这主要是由于其绝缘性能。 GIS和气体绝缘的传输线(GITL或GIL)基本上由在外壳内部由固体绝缘体支撑的导体组成,该导体填充有六氟化硫(SF6)气体[1],[2](见图1)。 SF6的优异介电性能[3]使GIS比常规的空气绝缘变电站[4]更加可靠。它们还消耗更少的功率并占用更少的空间。 GIS组件采用模块化设计,填充了最少量的SF6,在工厂的受控环境中进行了预组装和测试,具有可接受的生命周期成本,可用于室内和室外应用。其他值得注意的功能包括预期的使用寿命超过50年,电动自润滑机制,耐腐蚀性和低故障概率[4],[5]。最近,重点已经放在GIS中的局部放电(PD)测量技术上[6],以及在高压(HV)DC系统中使用GIS [7],[8]。

著录项

  • 来源
    《IEEE Electrical Insulation Magazine》 |2016年第5期|18-31|共14页
  • 作者单位

    Department of Electrical, Electronic and Information Engineering "Guglielmo Marconi," Alma Mater Studiorum-University of Bologna, Viale Risorgimento 2, Bologna, I-40136, Italy;

    Department of Electrical, Electronic and Information Engineering "Guglielmo Marconi," Alma Mater Studiorum-University of Bologna, Viale Risorgimento 2, Bologna, I-40136, Italy;

    Department of Electrical, Electronic and Information Engineering "Guglielmo Marconi," Alma Mater Studiorum-University of Bologna, Viale Risorgimento 2, Bologna, I-40136, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sulfur hexafluoride; Substations; Partial discharges; Lightning; Hexafluoride; Nitrogen; Dielectrics; Gas insulation;

    机译:六氟化硫;变电站;局部放电;闪电;六氟化硫;氮;电介质;气体绝缘;

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