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Existing approaches and trends in uncertainty modelling and probabilistic stability analysis of power systems with renewable generation

机译:可再生能源电力系统不确定性建模和概率稳定性分析的现有方法和趋势

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The analysis of power systems with a significant share of renewable generation using probabilistic tools is essential to appropriately consider the impact that the variability and intermittency of the renewable generation has on the grid. This paper provides a critical assessment and classification of the available probabilistic computational methods that have been applied to power system stability assessment (including small and large disturbance angular stability, voltage and frequency stability). A probabilistic analysis framework with a state-of-the-art review of the existing literature in the area is presented comprising of a review of (i) input variable modelling, (ii) computational methods and (iii) presentation techniques for the output/results. The most widely used probabilistic methods in power system studies are presented with their specific application areas, advantages, and disadvantages. The purpose of this overview, classification, and assessment of the existing methods is to identify the most appropriate probabilistic methods to be used in their current forms, or suitably modified, for different types of stability studies of power systems containing renewable generation.
机译:使用概率工具分析在可再生能源中占有很大比重的电力系统对于适当考虑可再生能源的可变性和间歇性对电网的影响至关重要。本文提供了已被应用于电力系统稳定性评估(包括大大小小的干扰角稳定性,电压和频率稳定性)的概率计算方法的关键评估和分类。提出了一个概率分析框架,其中对该区域的现有文献进行了最新的回顾,包括对(i)输入变量建模,(ii)计算方法和(iii)输出/输出表示技术的回顾。结果。介绍了电力系统研究中使用最广泛的概率方法及其特定的应用领域,优点和缺点。概述,分类和评估现有方法的目的是,确定最合适的概率方法,以其当前形式使用或适当修改后,用于含可再生能源的电力系统的不同类型的稳定性研究。

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