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Impact of dynamic behavior of photovoltaic power generation systems on short-term voltage stability

机译:光伏发电系统动态行为对短期电压稳定性的影响

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In this study, we investigate the impact of the dynamic behavior of photovoltaic (PV) power generation systems on short-term voltage stability of the transmission system. First, the impact of the fault ride-through capability of a PV model is studied by setting several recovery speeds of the active current output when the operation of the PV system is interrupted because of a voltage sag. The results are analyzed by using transient P-V curves and a stability boundary, which has been proposed in our previous research. Further, we show that the installation of PVs severely impairs the short-term voltage stability if the PVs shut off after a voltage sag, and its recovery speed is low. Next, two countermeasures to control short-term voltage instability phenomena are tested. One is the operation of the PV system at a leading power factor in the normal state, and the other is the dynamic reactive power control by the inverters of the PV system after a voltage sag. Numerical examples are carried out for a one-load infinite-bus power system and a five-machine five-load power system. The results show that these countermeasures can play a substantial role in preventing the voltage instability phenomena caused when a PV system is suddenly interrupted because of a fault.
机译:在这项研究中,我们研究了光伏(PV)发电系统动态行为对传输系统的短期电压稳定性的影响。首先,通过设定由于电压凹陷而中断的电流输出的若干恢复速度来研究PV模型的故障乘转录能力的影响。通过使用瞬态P-V曲线和稳定性边界来分析结果,该稳定性边界已经在我们以前的研究中提出。此外,如果PVS在电压下垂后关闭,PVS的安装严重损害了短期电压稳定性,并且其恢复速度低。接下来,测试了控制短期电压不稳定现象的两个对策。一个是在正常状态下在前导功率因数处的PV系统的操作,另一个是电压凹陷后由PV系统的逆变器的动态无功功率控制。为单负载无限总线电力系统和五机五负载电力系统进行数值示例。结果表明,这些对策可以在防止由于故障突然中断时造成的电压不稳定现象来发挥重要作用。

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