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Simulation on Lightning Effects to 132 kV Underground Cable by using Alternative Transients Program / Electromagnetic Transients Program (ATP/EMTP)

机译:使用替代暂态程序/电磁暂态程序(ATP / EMTP)对132 kV地下电缆的雷电影响进行仿真

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Underground cable is frequently operated for carrying electricity where the power is demand to be transmitted throughout the sea or densely populated areas. Despite underground cables are not directly vulnerable to hazard, lightning strikes can induce a potential on the insulation layers of the underground cable and this may have enabled system disruption along the transmission system. According to the previous study in Malaysia, the most recorded current comes from lightning strikes are 34.5kA and 50kA. Moreover, this can be up to 100kA. Hence, this study was done to discover the probability of underground cable to having insulation breakdown due to overvoltage caused by lightning current penetrated into the soil medium which is breakdown channel in the soil medium probably been produced. This computer simulation was accomplished using an Alternative Transient Program version of the Electromagnetic Transients Program (ATP-EMTP) software to investigate whether the voltage induced due to lightning strikes can cause any breakdown in the insulation layers. The analysis was carried out using a network system composing of a 132kV Cu/XLPE/CWS/LDPE unarmored underground cable type with a length of 100 meters was modelled. By ejecting 34.5kA, 50kA and 100kA lightning current with 1/95 μs characteristic has been pervade into the modelled system. In addition, several types of soil medium to be represented into the electrical parameters in the whole electronic circuit system have been invented and analyzed. The study appeared that for the diverse parameters been used, which are various types of soil medium and three current generating from lightning impulse using a fixed designed cable. As a result, there is only a condition for the insulation layers of the cable system to encounter pierce and breakdown.
机译:在需要将电力传输到整个海洋或人口稠密地区的地方,地下电缆通常用于输送电力。尽管地下电缆并不直接易受危害,但是雷击会在地下电缆的绝缘层上感应出电势,这可能导致沿传输系统的系统中断。根据马来西亚的先前研究,记录最多的雷击电流为34.5kA和50kA。此外,最高可达100kA。因此,进行这项研究是为了发现地下电缆由于雷电流渗透到土壤介质中而产生的过电压而导致绝缘击穿的可能性,而雷电流可能是在土壤介质中产生的击穿通道。此计算机仿真是使用电磁暂态程序(ATP-EMTP)软件的备用暂态程序版本完成的,以研究由于雷击感应的电压是否会导致绝缘层击穿。使用网络系统进行分析,该网络系统由长度为100米的132kV Cu / XLPE / CWS / LDPE无铠装地下电缆类型组成。通过喷射34.5kA,具有1/95μs特性的50kA和100​​kA雷电电流已经渗入到建模系统中。另外,已经发明和分析了在整个电子电路系统中要表示为电参数的几种类型的土壤介质。研究似乎表明,使用了各种参数,包括各种类型的土壤介质和使用固定设计电缆的雷电冲击产生的三种电流。结果,仅存在电缆系统的绝缘层遇到刺穿和击穿的情况。

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