The cut-off frequency of disturbance propagation in discrete inertia model of power networks

Yuehao Yan, T. Bi, Liang Chen, Qixun Yang
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引用次数: 2

Abstract

With the development of power grid interconnection, the disturbance propagation phenomena are more and more apparent which take the form of mechanical waves. Once a disturbance occurs, its propagation might cause cascading events and even large blackouts. However, with the help of advanced communications network in smart grid, new control strategies can be devised by the reveal of disturbance propagation mechanisms. In this paper, disturbance propagation in chained power network is studied from the point of view of network structure and parameters. The discrete inertia model of power systems is built. The increment motion equation of generator is formulated. Then, the wave transfer function is derived which can be used to describe the amplitude and phase variation of disturbance waves. The cut-off frequency of discrete inertia model is proposed to determine the upper limit of disturbance frequency. Furthermore, the computer simulations are carried out and the results demonstrate the validity of the proposed theory.
电网离散惯性模型中扰动传播的截止频率
随着电网互联的发展,以机械波形式出现的扰动传播现象越来越明显。干扰一旦发生,其传播可能引起级联事件,甚至大面积停电。然而,借助智能电网中先进的通信网络,可以通过揭示干扰传播机制来设计新的控制策略。本文从电网结构和参数的角度研究了链式电网中的扰动传播问题。建立了电力系统的离散惯性模型。建立了发电机的增量运动方程。然后,导出了描述扰动波幅值和相位变化的波传递函数。提出了离散惯性模型的截止频率来确定扰动频率的上限。最后进行了计算机仿真,结果验证了所提理论的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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