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Study of the disturbance propagation in the discrete model of power networks

机译:电网离散模型中的扰动传播研究

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The study of the characteristics of disturbance propagation in the interconnected power networks is of great importance to control the spreading of disturbance and improve the security level of power systems. In this paper, the characteristics of disturbance propagation in a one-dimensional chained power network are studied from the electromechanical wave point of view. The electromechanical wave equation is built based on the discrete inertia model of power networks. The wave transfer function which can describe the variations of amplitude and the phase is derived. Then, the propagation characteristics of different frequency disturbances are analyzed. The corner frequency of the discrete inertia model is proposed. Furthermore, the frequency dispersion and local oscillation are considered and their relationships with the corner frequency are revealed as well. Computer simulations for a 50 generators chained network are carried out to verify the propagation characteristics of disturbances with different frequencies.
机译:对互连电网中干扰传播特性的研究非常重要,可以控制扰动的扩散和改善电力系统的安全水平。本文从机电波的角度研究了一维链式电网中干扰传播的特性。基于电网离散惯性模型构建机电波方程。衍生可以描述幅度和相位变化的波传递函数。然后,分析了不同频率干扰的传播特性。提出了离散惯性模型的角频率。此外,考虑频率分散和局部振荡,并且还显示与角频率的关系。执行50个发电机的计算机模拟链接网络,以验证具有不同频率的干扰的传播特性。

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