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Mechanism and Characteristics analysis of Ultra-low Frequency Oscillation phenomenon in a Power Grid with a High Proportion of Hydropower

机译:高比例水电电网超低频率振荡现象的机理及特性分析

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In a power grid with a high proportion of hydropower, a ultra-low frequency oscillation (ULFO) phenomenon usually appears at around 0.05 Hz along with extremely low damping, which may greatly influences the security and stability of the grid's operation. Preliminary operation experiences and study show that the ULFO can be affected by changing the parameters of the speed-regulating system of the hydraulic generator unites, however, it is not clear how much contribution of each parameter to the ULFO or whether there exists other factors that may impact the ULFO. This study analyzes the mechanism of ULFO by taking into consideration of a variety of factors including the speed governor model, hydraulic turbine model, generator model, excitation system model, and load model. The linearized state-space equations of a loaded power grid with double hydraulic generator units are deduced. The characteristics of oscillation modes are investigated through eigenvalue analysis and the participation factors of each state variable are calculated. Conclusions regarding the impacts of parameters on the frequency and damping of the ULFO are drawn and validated using simulations of a 10-generator 39-node sample system.
机译:在具有高比例水电的电网中,超低频率振荡(ULFO)现象通常出现在大约0.05Hz之上,并且具有极低的阻尼,这可能极大地影响了网格操作的安全性和稳定性。初步运营经验和研究表明,ULFO可以通过改变液压发电机单元的速度调节系统的参数来影响,但是,目前尚不清楚每个参数对ULFO的贡献或是否存在其他因素可能会影响ULFO。本研究通过考虑各种因素来分析ULFO的机制,包括速度调速器模型,液压涡轮模型,发电机模型,激励系统模型和装载模型。推导出具有双液压发电机单元的装载电网的线性化状态空间方程。通过特征值分析研究了振荡模式的特性,并计算每个州变量的参与因子。关于参数对ULFO频率和阻尼的影响的结论,并使用10发电机39节点样本系统的仿真验证和验证。

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