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Response of low voltage networks with high penetration of photovoltaic systems to transmission network faults

机译:低压网络与光伏系统高渗透到传输网络故障的响应

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The installed capacity of photovoltaic (PV) systems connected to low voltage (LV) networks in Germany has increased to more than 25 GW. Current grid codes still mandate these PV systems to disconnect in case of voltage dips below 0.8 p.u. The resulting response of LV distribution systems with high penetration of PV systems to faults in the transmission network is investigated for an integrated power system model that comprises all relevant voltage levels. Sensitivity studies with respect to the pre-fault power flow, various steady state and fault ride-through (FRT) control modes were performed. Our simulations for a realistic 2022 scenario show that a lack of FRT capability can cause the distribution system load to increase by 35–70 % of its peak value. It was found that for underexcited operation of PV systems prior to the fault, an overvoltage can occur post-fault at some busbars in the distribution system. Therefore, we conclude that new LV-connected PV systems and other DG installations should be requested to perform FRT.
机译:连接到德国低电压(LV)网络的光伏(PV)系统的装机容量增加到25距离。当前网格代码仍在要求这些PV系统在低于0.8 p.u的电压倾斜情况下断开连接。研究了LV分布系统对传输网络中的高渗透到传输网络中的故障的响应,用于集成电力系统模型,包括所有相关电压电平。执行关于预故障前功率流动,各种稳态和故障乘坐(FRT)控制模式的敏感性研究。我们对逼真的2022场景的模拟表明,缺乏FRT能力可能导致分配系统负载增加35-70%的峰值。发现,对于在故障之前的PV系统的未曝光操作,过电压可以在分配系统中的某些汇流条件下发生故障。因此,我们得出结论,应要求新的LV连接的光伏系统和其他DG安装进行FRT。

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