论文标题

在传输电网中定位强迫振荡的来源

Locating the source of forced oscillations in transmission power grids

论文作者

Delabays, Robin, Lokhov, Andrey Y., Tyloo, Melvyn, Vuffray, Marc

论文摘要

电力电网中的强迫振荡事件是指在系统中导致系统中持续存在的周期性干扰的状态。尽管电源网格在标准操作过程中逐渐衰减,但其中一些可以激发系统的正常模式,并在整个系统上引起大量的能量传输,从而造成距离源数千英里的巨大振荡。由于对系统操作员责任区域之外的系统参数的了解有限,因此这种干扰来源的本地化仍然是一个重大挑战。在这里,我们提出了一种新方法来定位强制振荡的来源,该方法通过使用原则上的最大似然方法执行同时进行动态模型识别来解决这一挑战。我们在各种示例中说明了算法的有效性,在这些示例中,强迫导致系统动力学的共振条件。我们的结果表明,成功推断强制振荡的来源和频率并不需要准确的系统参数知识。我们预计我们的方法将在一般动力学系统中找到更广泛的应用程序,该应用程序可以在短时间内通过线性化的动态来很好地描述。

Forced oscillation event in power grids refers to a state where malfunctioning or abnormally operating equipment causes persisting periodic disturbances in the system. While power grids are designed to damp most of perturbations during standard operations, some of them can excite normal modes of the system and cause significant energy transfers across the system, creating large oscillations thousands of miles away from the source. Localization of the source of such disturbances remains an outstanding challenge due to a limited knowledge of the system parameters outside of the zone of responsibility of system operators. Here, we propose a new method for locating the source of forced oscillations which addresses this challenge by performing a simultaneous dynamic model identification using a principled maximum likelihood approach. We illustrate the validity of the algorithm on a variety of examples where forcing leads to resonance conditions in the system dynamics. Our results establish that an accurate knowledge of system parameters is not required for a successful inference of the source and frequency of a forced oscillation. We anticipate that our method will find a broader application in general dynamical systems that can be well-described by their linearized dynamics over short periods of time.

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