PowerFactory-Python based assessment of frequency and transient stability in power systems dominated by power electronic interfaced generation

Jorge Mola-Jimenez, J. Rueda, A. Perilla, Wang Da, P. Palensky, M. V. D. van der Meijden
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引用次数: 3

Abstract

The deployment of variable renewable energy based power plants is increasing all over the world, however, unlike conventional power plants these are mostly connected to the grid via power electronic interfaces. High penetration of power electronic interfaced generation (PEIG) has an important impact on the inertia of the system, which is of major concern for frequency and large disturbance rotor angle (transient) stability. Therefore, it is desirable to study the effectiveness of widely used approaches to assess the stability of a system with high penetration of PEIG. This paper concerns with the modelling and control aspects of a power system for the evaluation of the most widely used metrics (indicators) to assess the dynamics of the power system related to frequency and rotor angle stability. The functionalities of Python are used to automate the generation of operational scenarios, the execution of time domain simulations, and the extraction of signal records to compute the aforesaid indicators. The paper also provides a discussion about possible improvements in the application of these indicators in monitoring tasks.
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基于PowerFactory-Python的电力电子接口发电系统频率和暂态稳定性评估
基于可变可再生能源的发电厂在世界范围内的部署正在增加,然而,与传统发电厂不同的是,这些发电厂大多通过电力电子接口连接到电网。电力电子接口发生器(PEIG)的高侵透性对系统的惯量有重要影响,影响系统的频率和大扰动转子角(暂态)稳定性。因此,需要研究广泛使用的方法来评估具有高PEIG渗透的系统的稳定性的有效性。本文关注电力系统的建模和控制方面,以评估最广泛使用的度量(指标),以评估与频率和转子角稳定性相关的电力系统动力学。Python的功能用于自动生成操作场景,执行时域模拟,以及提取信号记录以计算上述指标。本文还讨论了在监测任务中应用这些指标的可能改进之处。
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