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Assessing the severity of voltage sags due to short circuits in transmission and distribution grids

机译:评估由于输配电网短路引起的电压骤降的严重性

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Grid codes require power plants to stay connected during grid disturbances. Power generation units have to withstand voltage disturbances with very low remaining voltages at their terminals or point of common connection (PCC). The capability of power generation units to withstand a defined voltage-against-time-profile is specified by so called low-voltage-ride-through-(LVRT)-requirements. Typical are LVRT-profiles with remaining voltages around u=0.05 pu for a fault event duration in the range of 150-250 ms. This paper investigates the propagation of voltage sags through different voltage levels in a Central European power grid and the likelihood of such low voltages, as given by voltage-against-time-curves in grid codes. It is not intended to make statements about the LVRT-capability of power generation units in this paper. Simulations are performed on an actual power grid with real load flow data in the power systems analysis software DIgSILENT PowerFactory. Fault statistics are given for the analyzed power grid to provide a rough estimate about the probability of different types of faults and fault events in general.
机译:电网法规要求电厂在电网干扰期间保持连接。发电单元必须承受电压干扰,并且其端子或公共连接点(PCC)的剩余电压非常低。发电单元承受规定的电压-相对时间曲线的能力由所谓的低电压穿越(LVRT)要求指定。典型的是LVRT曲线,其残余电压在u = 0.05 pu左右,故障事件持续时间在150-250 ms范围内。本文研究了中欧电网中电压突降通过不同电压水平的传播情况,以及这种低电压的可能性,如电网代码中的电压-时间曲线所给出的。本文无意对发电设备的LVRT功能进行陈述。在电源系统分析软件DIgSILENT PowerFactory中,使用实际潮流数据在实际电网上进行仿真。给出了所分析电网的故障统计信息,以粗略估计不同类型的故障和故障事件的概率。

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