A small-signal stability index for power system dynamic impact assessment using time-domain simulations

F. R. S. Sevilla, L. Vanfretti
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引用次数: 10

Abstract

In this paper, a three layer small-signal stability index to assess power system dynamic simulations is presented. The index is calculated from an estimate of the eigenvalues of the system, which are determined using time-series from dynamic simulations. The methodology assumes that no other information about the system (model) is available. In the first layer, which is the main future of the index, a scalar (positive or negative) indicates if any of the modes have a damping ratio less than a predefined value. In the second layer, a vector is used to specify which pre-defined damping ratios were violated and finally, in the third layer a matrix is used to retrieve precise information about which mode has violated the pre-defined damping requirements of the system. The proposed index is first illustrated using synthetic data and then the index is validated using simulation data from the KTH-Nordic32 system.
基于时域仿真的电力系统动态影响评估小信号稳定性指标
本文提出了一种评估电力系统动态仿真的三层小信号稳定性指标。该指标是根据系统的特征值估计计算的,这些特征值是通过动态模拟的时间序列确定的。该方法假设没有关于系统(模型)的其他信息可用。在第一层,这是指数的主要未来,标量(正或负)表示是否有任何模态的阻尼比小于预定义值。在第二层中,使用向量来指定违反了哪些预定义的阻尼比;最后,在第三层中,使用矩阵来检索关于哪些模式违反了系统的预定义阻尼要求的精确信息。首先用综合数据对该指标进行了说明,然后用KTH-Nordic32系统的仿真数据对该指标进行了验证。
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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