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Stochastic simulations and stability to determine maximum wind power penetration of an island network

机译:随机模拟和稳定性,以确定孤岛网络的最大风力穿透力

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Wind power is the fastest developing renewable energy source in power networks. The maximization of wind power penetration depends on constraints imposed by network topology, electrical and mechanical limits, temporal variations of wind power injections and load consumption. In order to determine the maximum wind power penetration, uncertainties must be considered. The proposed method uses stability criterion (time domain simulations and) mixed with stochastic simulation, under different contingency scenarios. It determines the Probability Density Function (PDF) of unstable cases using small signal stability according to wind power penetration. The study case was IEEE 9-bus transmission network and two contingencies were considered: three phases short-circuit for Fault Ride Through (FRT) capability, and loss of a generation unit. The loss of a machine is the worst limiting operational condition which determines wind power penetration of the network within the operational limits of wind turbines (WTs).
机译:风力发电是电网中发展最快的可再生能源。风能渗透的最大化取决于网络拓扑,电气和机械限制,风能注入的时间变化和负载消耗所施加的约束。为了确定最大的风力穿透力,必须考虑不确定因素。所提出的方法在不同的意外情况下,将稳定性准则(时域模拟和)与随机模拟混合使用。它根据风力穿透力,使用小信号稳定性来确定不稳定情况下的概率密度函数(PDF)。该研究案例是IEEE 9总线传输网络,并考虑了以下两种情况:故障穿越(FRT)能力的三相短路,以及发电单元的损耗。机器的损失是最严重的限制运行条件,它决定了网络在风力涡轮机(WTs)的运行范围内的风力渗透能力。

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