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Influence of Cloud-to-Ground Lightning with long Continuing Current on the Operation Characteristic of 500 kV DC Transmission Line

机译:云到地面闪电对500 kV直流输电线路操作特性的影响

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The operating experience of power transmission lines shows that the influence of the continuous current process after cloud-to-ground (C-G) lightning return-stroke on the DC line cannot be ignored. Therefore, the characteristics of the continuous current are analyzed statistically in this paper. The lightning overvoltage simulation model considering the long continuous current is built, and the influence of the long continuing current on the operation characteristic of 500 kV DC transmission line is analyzed by simulation. Simulation results indicate that the long continuous current has less effect on the overvoltage amplitude of the transmission line. But after the lightning causes the insulator flashover, the flashover current of the insulator is increased by about 47% of the continuous current amplitude. When the arrester is in normal operation, the energy absorption is mainly determined by the stage of the return-stroke, and the existence of continuous current has almost no influence. However, when multiple return-strokes cause the arrester to fail, the influence of the continuous current needs to be considered.
机译:电力传输线的运行经验表明,在DC线上云到地(C-G)闪电返回行程的连续电流过程的影响不能忽视。因此,在本文中统计地分析了连续电流的特性。建立了考虑长连续电流的闪电过电压仿真模型,通过模拟分析了长期连续电流对500kV直流传输线的操作特性的影响。仿真结果表明,长连续电流对传输线的过电压幅度的影响较小。但在闪电导致绝缘体闪络后,绝缘体的闪络电流增加了连续电流幅度的约47%。当避雷器处于正常操作时,能量吸收主要由返回行程的阶段决定,并且连续电流的存在几乎没有影响。但是,当多个返回笔划导致避雷器失败时,需要考虑连续电流的影响。

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