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Oscillation Energy Analysis of Inter-Area Low-Frequency Oscillations in Power Systems

机译:电力系统区域间低频振荡的振荡能分析

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Low-frequency inter-area oscillation is a potentially dangerous phenomenon in power systems involving exchange of power among generators in different areas. In this paper, we study the characteristics of inter-area oscillation by analyzing the distribution of the oscillation energy. First, we introduce equations for the kinetic energy of generators and the potential energy of network branches, derived from the linearization of system dynamic equations. Then, we study the mode composition and the distribution of the generators' kinetic energy during low-frequency oscillations. A modal kinetic energy participation factor is proposed for evaluating the participation of each generator in the oscillation. The relationships among electromagnetic power oscillation distribution, rotor speed deviation, and generator kinetic energy are analyzed and compared to their modal parameter left eigenvectors, right eigenvectors, and linear participation factors, respectively. The bus voltage angle deviation, active power oscillation, and branch potential energy are calculated using the right eigenvector from modal analysis. The distribution characteristics of voltage angle oscillation and branch potential energy in inter-area oscillation is developed. The simulation results for a four-generator two-area system and the New England 10-machine 39-bus system illustrate the feasibility and validity of the proposed theory and method for analysis of inter-area oscillations.
机译:低频区域间振荡是在电力系统中潜在的危险现象,这种电力系统涉及不同区域内发电机之间的电力交换。在本文中,我们通过分析振荡能量的分布来研究区域间振荡的特征。首先,我们根据系统动力学方程的线性化引入发电机动能和电网分支势能的方程。然后,我们研究了低频振荡过程中发电机的模式组成和动能的分布。提出了一种模态动能参与因子,用于评估每个发电机在振荡中的参与。分析了电磁功率振荡分布,转子速度偏差和发电机动能之间的关系,并分别与它们的模态参数左特征向量,右特征向量和线性参与因子进行了比较。母线电压角度偏差,有功功率振荡和支路势能通过模态分析使用正确的特征向量来计算。提出了区域间振荡的电压角振荡和分支势能的分布特征。四发电机两区域系统和新英格兰10机39客车系统的仿真结果说明了所提出的理论和方法用于区域间振动分析的可行性和有效性。

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