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Simulating calculations of transient voltages and insulation coordination on 500 kV AC XLPE submarine cable line

机译:500 kV AC XLPE海底电缆线路的暂态电压和绝缘配合的仿真计算

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A power transmission line with a 500 kV AC cross linked polyethylene (XLPE) submarine cable combined with the overhead lines will be built at Zhoushan of China in 2018. The calculation of various transient voltages on the insulation and insulating sheath of the submarine cables is one of important subjects. This paper aims to clarify the characteristics of transient voltages under various fault conditions for ensuring its safety and reliability. The models of simulating calculation for the whole transmission system, including of overhead lines and substations, were established with the PSCAD/EMTDC software to analyze the characteristics and distributions of various transient voltages on the main insulation and insulating sheath along a near 17 km submarine cable. The results indicated the highest switching transient overvoltage on the insulation of cable would occur when switching off an un-loaded cable line with a concomitant re-striking of circuit breaker, and could reach 850kV (or 1.90 p.u.). The highest transient voltages on the insulation sheath tended to locate near the middle of the long-distance submarine cables, and would reach 11.4kV. The insulation margin of submarine cable insulation was over 20 percent under the maximum switching or lightning transient overvoltage, and the one of the insulating sheath exceeded at least 90 percent based on their practically measured withstand voltages.
机译:将于2018年在中国舟山建成一条具有500 kV AC交联聚乙烯(XLPE)海底电缆和架空线的输电线路。海底电缆的绝缘和绝缘护套上的各种瞬态电压的计算方法是一种重要主题。本文旨在阐明各种故障条件下的瞬态电压特性,以确保其安全性和可靠性。利用PSCAD / EMTDC软件建立了包括架空线和变电站在内的整个输电系统的仿真计算模型,以分析近17 km海底电缆主绝缘和绝缘护套上各种瞬态电压的特性和分布。 。结果表明,在断开空载电缆线并伴随断路器的重新触击时,电缆绝缘层上将出现最高的开关瞬态过电压,可能达到850kV(或1.90 p.u.)。绝缘护套上的最高瞬态电压趋向于位于长距离海底电缆的中部附近,并将达到11.4kV。在最大开关或雷电瞬态过电压下,海底电缆绝缘的绝缘裕度超过20%,并且根据其实际测量的耐压,绝缘皮之一超过了至少90%。

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