定位电力系统中强迫振荡源的一种基于能量的方法

L. Ying, Shen Chen, Liu Feng
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引用次数: 18

摘要

近年来,中国多个电网出现了难以用传统负阻尼机制解释的低频振荡。一些研究者根据强迫振荡机理认为,这些振荡是由外部周期性扰动引起的。毫无疑问,振荡源的定位(即对扰动的定位)是消除这种振荡的必要和决定性的。本文从港口控制的哈密顿理论出发,提出了一种基于港口能源供给的选址方法。通过计算相应端口注入网络的能量,可以有效地定位振荡源,即使在包含各种控制装置(如调速器和励磁器)的复杂系统中也是如此。与传统的基于特征分析的方法不同,该方法具有天然的分散性,不依赖于全局测量。对标准4机2区系统和IEEE-118总线系统的案例研究表明了所提出方法的有效性和效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An energy-based methodology for locating the source of forced oscillations in power systems
Recently, several power grids of China came across low frequency oscillations which are difficult to explain by the traditional negative damping mechanism. Some researchers suggest that those oscillations be caused by external periodic disturbances according to the forced oscillation mechanism. It takes no doubt that the oscillation source location (means locating the disturbances) is imperative and decisive to eliminate such a kind of oscillations. This paper proposes a location methodology based on Energy Supply on Port derived from the Port-Controlled Hamiltonian theory. By calculating the energy injected to the network at corresponding ports, the oscillation sources can be effectively located, even in complicated systems containing various kinds of control devices such as governors and exciters. Different from the traditional methodology based on eigen-analysis, the proposed methodology is naturally decentralized without the dependency on global measurements. Case studies on the standard 4-machine 2-area system and the IEEE-118 bus system show the effectiveness and efficiency of the proposed methodology.
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