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首页> 外文期刊>ETEP-European Transactions on Electrical Power >Important technologies applied for UHV AC substations in Japan
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Important technologies applied for UHV AC substations in Japan

机译:日本特高压交流变电站的重要技术

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The Tokyo Electric Power Company, Inc (TEPCO) plans 1100 kV power network system in Japan in order to meet the steady increasing demand for electricity. Four-hundred kilometer 1100-kV-designed double-circuit transmission lines have already been constructed and are now operated at 550 kV. 1100-kV substation equipment has also been developed.nnTo realize the best design technically and economically throughout the transmission line and the substation, important technical solutions for network problems peculiar to the ultra high voltage (UHV) system have been introduced. They include insulation coordination, overvoltage countermeasures, and fast multi-phase reclosing systems with high speed earthing switches (HSESs). The overvoltage countermeasures are realized by high performance metal oxide surge arresters (MOSAs), gas circuit breakers (GCBs) with closing/opening resistor, and disconnectors (DSs) with resistor. These sophisticated technologies realize highly reliable and economical UHV substations and transmission lines.nnThis paper describes important, fundamental, and specific requirements for UHV substations such as their compactness, economical view, and environmental harmony. There are many technical/economical aspects to be considered on UHV substation and based on those considerations: (a) compactness, (b) less impacts to the environment, (c) optimizing cost, could be fulfilled.nnThis paper also describes the technologies addressed to UHV class components such as the introduction of new concept “on-site assembly transformer,” VFTO reduction countermeasure and the necessity of full-scale seismic qualification test. Copyright © 2011 John Wiley & Sons, Ltd.
机译:东京电力公司(TEPCO)计划在日本建立1100 kV的电网系统,以满足不断增长的电力需求。 1100 kV设计的四百公里双回输电线路已经建成,目前工作在550 kV。还开发了1100 kV变电站设备。为了在整个输电线路和变电站中实现技术上和经济上的最佳设计,引入了针对超高压(UHV)系统特有的网络问题的重要技术解决方案。其中包括绝缘协调,过压对策以及带有高速接地开关(HSES)的快速多相重合闸系统。过电压对策是通过高性能金属氧化物电涌放电器(MOSA),带有闭合/断开电阻器的气体断路器(GCB)和带有电阻器的隔离器(DSs)来实现的。这些先进的技术可实现高度可靠且经济的特高压变电站和输电线路。nn本文描述了特高压变电站的重要,基本和特定要求,例如紧凑性,经济性和环境和谐性。基于这些考虑,在特高压变电站中有许多技术/经济方面需要考虑:(a)紧凑性;(b)对环境的影响较小;(c)优化成本。)本文还介绍了所解决的技术特高压级组件,例如引入新概念“现场组装变压器”,VFTO减少对策以及进行全面抗震鉴定测试的必要性。版权所有©2011 John Wiley&Sons,Ltd.

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