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Impact of increased penetration of large-scale PV generation on short-term stability of power systems

机译:大规模光伏发电渗透的增加对电力系统短期稳定性的影响

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This paper investigates the impact of increased penetration of large-scale photovoltaic (PV) generation on the short-term stability of the IEEE New England 39-bus test system, considering the stochastic nature of power systems. Based on the probabilistic models of input parameters, such as load variation and the occurrence of contingencies, Monte Carlo-type simulations are performed to iteratively evaluate the system time domain response. Also, different strategies for voltage regulation capabilities for PV systems were analyzed. The simulation results identified both, improvement and detrimental effects on short-term stability with different penetration levels of PV generation. The beneficial or detrimental effects depend on the PV systems operating mode, whether or not including voltage regulation. Greater instability conditions are reported if Full Replacing (FR) of Conventional Generating Units (CGUs) is considered. However, fewer instability conditions are obtained if Partial Replacing (PR) is considered in lieu of FR since CGU keep excitation control systems (AVR, exciter) and turbine governor controls activated.
机译:考虑到电力系统的随机性,本文研究了大型光伏(PV)发电量的增加对IEEE新英格兰39总线测试系统的短期稳定性的影响。基于输入参数的概率模型,例如负载变化和突发事件的发生,执行蒙特卡洛(Monte Carlo)型仿真,以迭代方式评估系统时域响应。此外,还分析了光伏系统调压能力的不同策略。模拟结果确定了不同的PV生成水平对短期稳定性的改善和有害影响。有利或有害的影响取决于光伏系统的运行模式,无论是否包括电压调节。如果考虑完全替换常规发电机组(CGU),则会报告更大的不稳定状况。但是,如果考虑使用部分更换(PR)代替FR,则可获得的不稳定条件会更少,因为CGU会保持励磁控制系统(AVR,励磁机)和涡轮调速器控制器处于激活状态。

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