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Impact of distribution line insulated tower head and cross arms on lightning surges in 10 kV substations

机译:配电线路绝缘塔头和横臂对10 kV变电站雷电浪涌的影响

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In order to reduce the lightning trip-out rate, a kind of insulated tower head and cross arms are used in 10kV overhead distribution lines, which may lead to the increase of lightning surge amplitude and create hazards to the equipment in substations. It's crucial to analyze the insulation coordination of 10kV substations under such condition. In this paper, an EMTP model for a 10kV distribution line and substation is developed. The lightning surges and influence factors on mean time between failure (MTBF) of substation are analyzed. The results show that overvoltage on equipment of substation are greatly increased and the MTBF of main transformer and surge arrester are reduced and below the allowable limit after the use of insulated tower head and cross arms. The MTBF of main transformer are greatly influenced by the front time of lightning current, the peak current distribution and the pole grounding resistance. An additional arrester at the incoming line and the increase of absorption energy of arrester are adopted as the effective countermeasures to improve the insulation coordination of such 10kV substation.
机译:为了降低雷击跳闸率,在10kV架空配电线路中使用了一种绝缘的塔架和横臂,这可能导致雷电浪涌幅度的增加,并对变电站的设备造成危害。在这种情况下,分析10kV变电站的绝缘配合至关重要。本文针对10kV配电线路和变电站建立了EMTP模型。分析了雷电冲击波及影响变电站平均故障间隔时间(MTBF)的因素。结果表明,使用绝缘塔头和横臂后,变电站设备上的过电压大大增加,主变压器和电涌放电器的平均无故障时间降低,并低于允许的极限。主变压器的平均无故障时间受雷电电流的前置时间,峰值电流分布和极接地电阻的影响很大。引入额外的避雷器和增加避雷器的吸收能量是改善这种10kV变电站绝缘配合的有效措施。

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